43
References

References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

  • Upload
    others

  • View
    1

  • Download
    0

Embed Size (px)

Citation preview

Page 1: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

References

Page 2: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

7. REFERENCES

AGERBERTH, B., LEE, J. Y., BERGMAN, T., CARLQUIST, M., BOMAN, H. G., MUTT,

V. and JÖRNVALL, H., 1991. Amino acid sequence of PR-39. Isolation from pig

intestine of a new member of the family of proline-arginine-rich antibacterial

peptides. Eur. J. Biochem., 202: 849-854.

AGERBERTH, B., GUNNE, H., ODEBERG, J., KOGNER, P., BOMAN, H. G. and

GUDMUNDSSON G. H., 1995. FALL-39, a putative human peptide antibiotic, is

cysteine-free and expressed in bone marrow and testis. Proc. Natl. Acad. Sci. USA,

92: 195-199.

ALAM, M. S., LAVENDER, F. L., IYENGAR, A., RAHMAN, M. A., AYAD, H. H.,

LATHE, R., MORLEY, S. D. and MACLEAN, N., 1996. Comparison of the activity

of carp and rat β-actin gene regulatory sequences in tilapia and rainbow trout

embryos. Mol. Reprod. Dev., 45: 117-122.

ALI, G. S. and REDDY, A. S. N., 2000. Inhibition of fungal and bacterial plant pathogens by

synthetic peptides: in vitro growth inhibition, interaction between peptides, and

inhibition of disease progression. Mol. Plant-Microbe Interact., 13: 847-859.

ALIMUDDIN, G. Y., KIRON, V., SATOH, S. and TAKEUCHI, T., 2005. Enhancement of

EPA and DHA biosynthesis by over-expression of masu salmon n-6-desaturase-like

gene in zebrafish. Transgenic Res., 14: 159-165.

ALTSCHUL, S. F., MADDEN, T. L., SCHÄFFER, A. A., ZHANG, J., ZHANG, Z.,

MILLER, W. and LIPMAN, D. J., 1997. Gapped BLAST and PSI-BLAST: a new

generation of protein database search programs. Nucleic Acids Res., 25: 3389-3402.

ANATHY, V., VENUGOPAL, T., KOTEESWARAN, R., PANDIAN, T. J. and

MATHAVAN, S., 2001. Cloning, sequencing and expression of cDNA encoding

growth hormone from Indian catfish (Heteropneustes fossilis). J. Biosci., 26: 315-

324.

ANDERSSON, M., BOMAN, A. and BOMAN, H. G., 2003. Ascaris nematodes from pig and

human make three antibacterial peptides: isolation of cecropin P1 and two ASABF

peptides. Cell. Mol. Life Sci., 60: 599-606.

Page 3: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial

peptides from insects and mammals, are potently fungicidal against Candida

albicans. Med. Microbiol. Immunol., 189: 169-173.

ANDREU, D. and RIVAS, L., 1998. Animal antimicrobial peptides: an overview.

Biopolymers, 47: 415-433.

ANDREU, D., MERRIFIELD, R. B., STEINER, H. and BOMAN, H. G., 1985. N-terminal

analogues of cecropin A: synthesis, antibacterial activity, and conformational

properties. Biochemistry, 24: 1683-1688.

ANDREU, D., UBACH, J., BOMAN, A., WAHLIN, B., WADE, D., MERRIFIELD, R. B.

and BOMAN, H. G., 1992. Shortened cecropin A-melittin hybrids. Significant size

reduction retains potent antibiotic activity. FEBS Lett., 296: 190-194.

*AREZZO, F., 1989. Sea urchin sperm as vector of foreign genetic information. Cell Biol. Int.

Rep., 13: 391-404.

*ASSEM, S. S. and EL-ZAEEM, S. Y., 2005. Application of biotechnology in fish breeding.

II: production of highly immune genetically modified redbelly tilapia, Tilapia zillii.

Afr. J. Biotechnol., 4: 449-459.

ATKINSON, P. W., HINES, E. R., BEATON, S., MATTHAEI, K. I., REED, K. C. and

BRADLEY, M. P., 1991. Association of exogenous DNA with cattle and insect

spermatozoa in vitro. Mol. Reprod. Dev., 29: 1-5.

BALDASSARRE, H., WANG, B., KAFIDI, N., GAUTHIER, M., NEVEU, N., LAPOINTE,

J., SNEEK, L., LEDUC, M., DUGUAY, F., ZHOU, J. F., LAZARIS, A. and

KARATZAS, C. N., 2003. Production of transgenic goats by pronuclear

microinjection of in vitro produced zygotes derived from oocytes recovered by

laparoscopy. Theriogenology, 59: 831-839.

BANDYOPADHYAY, P., KREN, B. T., MA, X. and STEER, C. J., 1998. Enhanced gene

transfer into HuH-7 cells and primary rat hepatocytes using targeted liposomes and

polyethylenimine. Biotechniques, 25: 282-292.

BAO, B., PEATMAN, E., LI, P., HE, C. and LIU, Z. J., 2005. Catfish hepcidin gene is

expressed in a wide range of tissues and exhibit tissue-specific upregulation after

bacterial infection. Dev. Comp. Immunol., 29: 939-950.

Page 4: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

BAO, B., PEATMAN, E., XU, P., LI, P., ZENG, H., HE, C. and LIU, Z., 2006. The catfish

liver-expressed antimicrobial peptide 2 (LEAP-2) gene is expressed in a wide range

of tissues and developmentally regulated. Mol. Immunol., 43: 367-377.

BEARDMORE, J. A. and McCONNELL, S. J., 1998. Genetics and disease resistance in

aquaculture. J. Appl. Ichthyol., 14: 167-171.

BEARDMORE, J. A. and PORTER, J. S., 2003. Genetically Modified Organisms and

Aquaculture. FAO Fisheries Circular No. 989. Food and Agriculture Organization of

the United Nations, Rome, 38 pp.

BEHBOODI, E., GROEN, W., DESTREMPES, M. M., WILLIAMS, J. L., OHLRICHS, C.,

GAVIN, W. G., BROEK, D. M., ZIOMEK, C. A., FABER, D. C., MEADE, H. M.

and ECHELARD, Y., 2001. Transgenic production from in vivo-derived embryos:

effect on calf birth weight and sex ratio. Mol. Reprod. Dev., 60: 27-37.

BETANCOURT, O. H., ATTAL, J., THERON, M. C., PUISSANT, C. and HOUDEBINE. L.

M., 1993. Efficiency of introns from various origins in fish cells. Mol. Mar. Biol.

Biotechnol., 2: 181-188.

BEVINS, C. L. and ZASLOFF, M., 1990. Peptides from frog skin. Annu. Rev. Biochem., 59:

395-414.

BIRKEMO, G. A., LUDERS, T., ANDERSEN, O., NES, I. F. and NISSEN-MEYER, J.,

2003. Hipposin, a histone-derived antimicrobial peptide in Atlantic halibut

(Hippoglossus hippoglossus L.). Biochim. Biophys. Acta, 1646: 207-215.

BOMAN, H. G., 1995. Peptide antibiotics and their role in innate immunity. Annu. Rev.

Immunol., 13: 61-92.

*BOMAN, H. G., 1996. Peptide antibiotics: holy or heretic grails of innate immunity? Scand.

J. Immunol., 43: 475-482.

BOMAN, H. G., 2003. Antibacterial peptides: basic facts and emerging concepts. J. Intern.

Med., 254: 197-215.

BOMAN, H. G., AGERBERTH, B. and BOMAN, A., 1993. Mechanisms of action on

Escherichia coli of cecropin P1 and PR-39, two antibacterial peptides from pig

intestine. Infect. Immun., 61: 2978-2984.

Page 5: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

BOMAN, H. G., FAYE, I., GUDMUNDSSON, G. H., LEE, J. Y. and LIDHOLM, D. A.,

1991. Cell-free immunity in cecropia. A model system for antibacterial proteins. Eur.

J. Biochem., 201: 23-31.

BOMAN, H. G., WADE, D., BOMAN, I. A., WAHLIN, B. and MERRIFIELD, R. B., 1989.

Antibacterial and antimalarial properties of peptides that are cecropin-melittin

hybrids. FEBS Lett., 259: 103-106.

BORTH, W. B., JONES, V. P., ULLMAN, D. E. and HU, J. S., 2001. Effects of synthetic

cecropin analogs on in vitro growth of Acholeplasma laidlawii. Antimicrob. Agents

Chemother., 45: 1894-1895.

BOWDISH, D. M., DAVIDSON, D. J. and HANCOCK, R. E. W., 2005. A re-evaluation of

the role of host defence peptides in mammalian immunity. Curr. Protein Pept. Sci.,

6: 35-51.

BREM, G., BRENIG, B., HORSTGEN-SCHWARK, G. and WINNACKER, E. L., 1988.

Gene transfer in tilapia (Oreochromis niloticus). Aquaculture, 68: 209-219.

BRINSTER, R. L., SANDGREN, E. P., BEHRINGER, R. R. and PALMITER, R. D., 1989.

No simple solution for making transgenic mice. Cell, 59: 239-241.

BROGDEN, K. A., 2005. Antimicrobial peptides: pore formers or metabolic inhibitors in

bacteria? Nat. Rev. Microbiol., 3: 238-250.

BROGDEN, K. A., DE LUCCA, A. J., BLAND, J. and ELLIOTT, S., 1996. Isolation of an

ovine pulmonary surfactant-associated anionic peptide bactericidal for Pasteurella

haemolytica. Proc. Natl. Acad. Sci. USA, 93: 412-416.

BROGDEN, K. A., ACKERMANN, M. and HUTTNER, K. M., 1997. Small, anionic, and

charge-neutralizing propeptide fragments of zymogens are antimicrobial. Antimicrob.

Agents Chemother., 41: 1615-1617.

BROGDEN, K. A., ACKERMANN, M. and HUTTNER, K. M., 1998. Detection of anionic

antimicrobial peptides in ovine bronchoalveolar lavage fluid and respiratory

epithelium. Infect. Immun., 66: 5948-5954.

BROGDEN, K. A., ACKERMANN, M. R., MCCRAY, P. B. Jr. and HUTTNER, K. M.,

1999. Differences in the concentrations of small, anionic, antimicrobial peptides in

bronchoalveolar lavage fluid and in respiratory epithelia of patients with and without

cystic fibrosis. Infect. Immun., 67: 4256-4259.

Page 6: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

BROWN, K. L. and HANCOCK, R. E. W., 2006. Cationic host defense (antimicrobial)

peptides. Curr. Opin. Immunol., 18: 24-30.

BUCHANAN, J. T., NICKENS, A. D., COOPER, R. K. and TIERSCH, T. R., 2001.

Transfection of eastern oyster (Crassotrea virginica) embryos. Mar. Biotechnol., 3:

322-335.

BULET, P., STÖCKLIN, R. and MENIN, L., 2004. Anti-microbial peptides: from

invertebrates to vertebrates. Immunol Rev., 198: 169-184.

BUONO, R. J. and LINSER, P. J., 1992. Transient expression of RSVCAT in transgenic

zebrafish made by electroporation. Mol. Mar. Biol. Biotechnol., 1: 271-275.

BURNS, J. C., FRIEDMANN, T., DRIEVER, W., BURRASCANO, M. and YEE, J., 1993.

Vesicular stomatitis virus G glycoprotein pseudotyped retroviral vectors:

concentration to very high titer and efficient gene transfer into mammalian and

nonmammalian cells. Proc. Natl. Acad. Sci. USA, 90: 8033-8037.

CADORET, J. P., BOULO, V., GENDREAU, S. and MIALHE, E., 1997. Promoters from

Drosophila heat shock protein and cytomegalovirus drive transient expression of

luciferase introduced by particle bombardment into embryos of the oyster

Crassostrea gigas. J. Biotechnol., 56: 183-189.

CAELERS, A., MACLEAN, N., HWANG, G., EPPLER, E. and REINECKE, M., 2005.

Expression of endogenous and exogenous growth hormone (GH) messenger (m)

RNA in a GH-transgenic tilapia (Oreochromis niloticus). Transgenic Res., 14: 95-

104.

CALDOVIC, L. and HACKETT, P. B. Jr., 1995. Development of position-independent

expression vectors and their transfer into transgenic fish. Mol. Mar. Biol. Biotechnol.,

4: 51-61.

CALLAWAY, J. E., LAI, J., HASELBECK, B., BALTAIAN, M., BONNESEN, S. P.,

WEICKMANN, J., WILCOX, G. and LEI, S. P., 1993. Modification of the C

terminus of cecropin is essential for broad-spectrum antimicrobial activity.

Antimicrob. Agents Chemother., 37: 1614-1619.

Page 7: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

CAMMUE, B. P. A., DE BOLLE, M. F. C., SCHOFFS, H. M. E., TERRAS, F. R. G.,

THEVISSEN, K., OSBORN, R. W., REES, S. B. and BROEKAERT, W. F., 1994.

Gene encoded antimicrobial peptides from plants. In: Antimicrobial Peptides.

BOMAN, H. G., MARSH, J. and GOODE, J. A., (Eds.), Wiley InterScience, New

York, pp. 91-106.

CASTRO, F, O., HERNÁNDEZ, O., ULIVER, C., SOLANO, R., MILANES, C., AGUILAR,

A., PÉREZ, A., DE ARMAS, L., HERRERA, L. and DE LA FUENTE, J., 1991.

Introduction of foreign DNA into spermatozoa of farm animals. Theriogenology, 36:

1099-1110.

*CAVARI, B., HONG, Y., FUNKENSTEIN, B., MOAV, B. and SCHART, M., 1993. All-

fish gene constructs for growth hormone gene transfer in fish. Fish Physiol.

Biochem., 11: 345-352.

CHAN, W. K. and DEVLIN, R. H., 1993. Polymerase chain reaction amplification and

functional characterization of sockeye salmon histone H3, metallothionein-B and

protamine promoters. Mol. Mar. Biol. Biotechnol., 2: 308-318.

CHANG, C. I., PLEGUZUELOS, O., ZHANG, Y. A., ZOU, J. and SECOMBES, C. J., 2005.

Identification of a novel cathelicidin gene in the rainbow trout Oncorhynchus mykiss.

Infect. Immun., 73: 5053-5064.

CHANG, C. I., ZHANG, Y. A., ZOU, J., NIE, P. and SECOMBES, C. J., 2006. Two

cathelidin genes are present in both rainbow trout (Oncorhynchus mykiss) and

Atlantic salmon (Salmo salar). Antimicrob. Agent Chemother., 50: 185-195.

CHANT, A., KRAEMER-PECORE, C. M., WATKIN, R. K. and GEOFF, G., 2005.

Attachment of a histidine tag to the minimal zinc finger protein of the Aspergillus

nidulans gene regulatory protein AreA causes a conformational change at the DNA-

binding site. Protein Expr. Purif., 39: 152-159.

CHEN, H. M., WANG, W., SMITH, D. and CHAN, S. C., 1997. Effects of the antibacterial

peptide cecropin B and its analogs, cecropins B-1 and B-2, on liposomes, bacteria,

and cancer cells. Biochim. Biophys. Acta, 1336: 171-179.

CHEN, S. L., LI, W., MENG, L., SHA, Z. X., WANG, Z. J. and REN, G. C., 2007. Molecular

cloning and expression analysis of a hepcidin antimicrobial peptide gene from turbot

(Scophthalmus maximus). Fish Shellfish Immunol., 22: 172-181.

Page 8: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

CHEN, T. T., LIN, C. M., DUNHAM, R. A. and POWERS, D. A., 1992. Integration,

expression and inheritance of foreign fish growth hormone gene in transgenic fish.

In: Transgenic Fish. HEW, C. L. and FLETCHER, G. L., (Eds.), World Scientific

Publishing Co., Singapore, pp. 164-175.

CHEN, T. T., LU, J. K., SHAMBLOTT, M. J., CHENG, C. M., LIN, C. M., BURNS, J. C.,

REIMSCHUESSEL, R., CHATAKONDI, N. and DUNHAM, R. A., 1996.

Transgenic fish: ideal models for basic research and biotechnological applications.

In: Molecular Zoology: Advances, Strategies and Protocols. FERRARIS, J. D. and

PALUMBI, S. R., (Eds.), Wiley-Liss Inc., New York, pp. 401-433.

CHICHARRO, C., GRANATA, C., LOZANO, R., ANDREU, D. and RIVAS, L., 2001. N-

terminal fatty acid substitution increases the leishmanicidal activity of CA (1-7) M

(2-9), a cecropin-melittin hybrid peptide. Antimicrob. Agents Chemother., 45: 2441-

2449.

CHIOU, P. P., LIN, C. M., PEREZ, L. and CHEN, T. T., 2002. Effect of cecropin B and a

synthetic analogue on propagation of fish viruses in vitro. Mar. Biotechnol., 4: 294-

302.

CHOI, C. S., LEE, I. H., KIM, E., KIM, S. I. and KIM, H. R., 2000. Antibacterial properties

and partial cDNA sequences of cecropin-like antibacterial peptides from the common

cutworm, Spodoptera litura. Comp. Biochem. Physiol., C: Toxicol. Pharmacol., 125:

287-297.

*CHOURROUT, D. and PERROT, E., 1992. No transgenic rainbow trout produced with

sperm incubated with linear DNA. Mol. Mar. Biol. Biotechnol., 1: 282-285.

CHOURROUT, D., GUYOMARD, R. and HOUDEBINE, L. M., 1986. High efficiency gene

transfer in rainbow trout (Salmo gairdneri Rich.) by microinjection into egg

cytoplasm. Aquaculture, 51: 143-150.

CHRISTENSEN, B., FINK, J., MERRIFIELD, R. B. and MAUZERALL, D., 1988. Channel-

forming properties of cecropins and related model compounds incorporated into

planar lipid membranes. Proc. Natl. Acad. Sci. USA, 85: 5072-5076.

COCIANCICH, S., BULET, P., HETRU, C. and HOFFMANN, J. A., 1994. The inducible

antibacterial peptides of insects. Parasitol. Today, 10: 132-139.

Page 9: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

COLE, A. M., DAROUICHE, R. O., LEGARDA, D., CONNELL, N. and DIAMOND, G.,

2000. Characterization of a fish antimicrobial peptide: gene expression, subcellular

localization, and spectrum of activity. Antimicrob Agents Chemother., 44: 2039-

2045.

COLE, A. M., WEIS, P. and DIAMOND, G., 1997. Isolation and characterization of

pleurocidin. An antimicrobial peptide in the skin secretions of winter flounder. J.

Biol. Chem., 272: 12008-12013.

COLLAS, P. and ALESTRÖM, P., 1997a. Rapid targeting of plasmid DNA to zebrafish

embryo nuclei by the nuclear localization signal of SV40 T antigen. Mol. Mar. Biol.

Biotechnol., 6: 48-58.

COLLAS, P. and ALESTRÖM, P., 1997b. Nuclear localization signals: a driving force for

nuclear transport of plasmid DNA in zebrafish. Biochem. Cell Biol., 75: 633-640.

COLLAS, P., HUSEBYE, H. and ALESTRÖM, P., 1997. Transferring foreign genes into

zebrafish eggs by microinjection. In: Transgenic Animals: Generation and Use.

HAUDEBINE, L. M., (Eds.), Harwood Academic Publication, Amsterdam, pp. 119-

122.

CONCHA, M. I., SMITH, V. J., CASTRO, K., BASTIAS, A., ROMERO, A. and

AMTHAUER, R. J., 2004. Apolipoproteins A-I and A-II are potentially important

effectors of innate immunity in the teleost fish Cyprinus carpio. Eur. J. Biochem.,

271: 2984-2990.

COOK, J. T., MCNIVEN, M. A., RICHARDSON, G. F. and SUTTERLIN, A. M., 2000.

Growth rate, body composition and feed digestibility/conversion of growth-enhanced

transgenic Atlantic salmon. Aquaculture, 188: 15-32.

*CORPET, F., 1988. Multiple sequence alignment with hierarchical clustering. Nucl. Acids

Res., 16: 10881-10890.

COWLAND, J. B., JOHNSEN, A. H. and BORREGAARD, N., 1995. hCAP-18, a

cathelin/pro-bactenecin-like protein of human neutrophil specific granules. FEBS

Lett., 368: 173-176.

CUESTA, A., MESEGUER, J. and ESTEBAN, M. A., 2008. The antimicrobial peptide

hepcidin exerts an important role in the innate immunity against bacteria in the bony

fish gilthead seabream. Mol. Immunol., 45: 2333-2342.

Page 10: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

*CUI, Z., XIE, Y., XU, K., GUO, L. and ZHU, Z., 1993. The growth replacement of

hypophysectomized fish by human growth hormone and the corresponding

transgene. Acta Hydrobiol. Sin./Shuisheng Shengwu Xuebao, 17: 166-173.

CULP, P., NÜSSLEIN-VOLHARD, C. and HOPKINS, N., 1991. High-frequency germ-line

transmission of plasmid DNA sequences injected into fertilized zebrafish eggs. Proc.

Natl. Acad. Sci. USA, 88: 7953-7957.

DAVIDSON, A. E., BALCIUNAS, D., MOHN, D., SHAFFER, J., HERMANSON, S.,

SIVASUBBU, S., CLIFF, M. P., HACKETT, P. B. and EKKER, S. C., 2003.

Efficient gene delivery and gene expression in zebrafish using the sleeping beauty

transposon. Dev. Biol., 263: 191-202.

*DAVIES, P. L. and HEW, C. L., 1990. Biochemistry of fish antifreeze proteins. FASEB J.,

4: 2460-2468.

*DE LA FUENTE, J., GUILLEN, I. and ESTRADA, M. P., 1998. The paradox of growth

acceleration in fish. In: New Developments in Marine Biotechnology. LE GAL, Y.

and HALVORSON, H. O., (Eds.), Plenum Press, New York, pp. 7-10.

DESTOUMIEUX-GARZON, D, D., SAULNIER, J., GARNIERT, C., JOUFFREY, P.,

BULET, E. and BACHERE, E., 2001. Crustacean immunity. Antifungal peptides are

generated from the C terminus of shrimp hemocyanin in response to microbial

challenge. J. Biol. Chem., 276: 47070-47077.

*DEVLIN, R. H., 1998. Production and evaluation of transgenic fish for aquaculture.

Australas. Biotechnol., 8: 222-227.

DEVLIN, R. H., YESAKI, T. Y., BIAGI, C. A. and DONALDSON, E. M., 1994.

Extraordinary salmon growth. Nature, 371: 209-210.

DEVLIN, R. H., YESAKI, T. Y., DONALDSON, E. M. and HEW, C. L., 1995a.

Transmission and phenotypic effects of an antifreeze/GH gene construct in coho

salmon (Oncorhynchus kisutch). Aquaculture, 137: 161-170.

DEVLIN, R. H., YESAKI, T. Y., DONALDSON, E. M., DU, S. J. and HEW, C. L., 1995b.

Production of germline transgenic Pacific salmonids with dramatically increased

growth performance. Can. J. Fish. Aquat. Sci., 52: 1376-1384.

Page 11: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

DEVLIN, R. H., SUNDSTRÖM, L. F. and MUIR, W. M., 2006. Interface of biotechnology

and ecology for environmental risk assessments of transgenic fish. Trends

Biotechnol., 24: 89-97.

DICKINSON, L., RUSSELL, V. and DUNN, P. E., 1988. A family of bacteria-regulated,

cecropin D-like peptides from Manduca sexta. J. Biol. Chem., 263: 19424-19429.

DONG, X. Z., XU, H. B., HUANG, K. X., LIOU, Q. and ZHOU, J., 2002. The preparation

and characterization of an antimicrobial polypeptide from the loach Misgurnus

anguillicaudatus. Protein Expr. Purif., 26: 235-242.

DOUGLAS, S. E., GALLANT, J. W., GONG, Z. and HEW, C., 2001. Cloning and

developmental expression of a family of pleurocidin-like antimicrobial peptides from

winter flounder Pleuronectes americanus (Walbaum). Dev. Comp. Immunol., 25:

137-147.

DOUGLAS, S. E., GALLANT, J. W., LIEBSCHER, R. S., DACANAY, A. and TSOI, S. C.

M., 2003a. Identification and expression analysis of hepcidin-like antimicrobial

peptides in bony fish. Dev. Comp. Immunol., 27: 589-601.

DOUGLAS, S. E., PATRZYKAT, A., PYTYCK, J. and GALLANT, J. W., 2003b.

Identification, structure and differential expression of novel pleurocidins clustered on

the genome of the winter flounder Pseudopleuronectes americanus (Walbaum). Eur.

J. Biochem., 270: 3720-3730.

DU, S. J., GONG, Z., FLETCHER, G. L., SHEARS, M. A., KING, M. J., IDLER, D. R. and

HEW, C. L., 1992a. Growth enhancement in transgenic Atlantic salmon by the use of

an “all fish” chimeric growth hormone gene construct. Bio/Technology, 10: 176-181.

DU, S. J., GONG, Z., HEW, C. L., TAN, C. H. and FLETCHER, G. L., 1992b. Development

of an all-fish gene cassette for gene transfer in aquaculture. Mol. Mar. Biol.

Biotechnol., 1: 290-300.

DUNHAM, R. A., 2006. Cecropin transgenic catfish and studies toward commercial

application. In: Meeting Report and Abstracts of the 2005 UC Davis Transgenic

Animal Research Conference V. Transgenic Res., 15: 115-130.

*DUNHAM, R. A., EASH, J., ASKINS, J. and TOWNES, T. M., 1987. Transfer of the

metallothionein human growth-hormone fusion gene into channel catfish. Trans. Am.

Fish. Soc., 116: 87-91.

Page 12: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

DUNHAM, R. A., RAMBOUX, A. C., DUNCAN, P. L., HAYAT, M., CHEN, T. T., LIN, C.

M., KIGHT, K., GONZALEZ-VILLASENOR, I. and POWERS, D. A., 1992.

Transfer, expression, and inheritance of salmonid growth hormone genes in channel

catfish, Ictalurus punctatus, and effects on performance traits. Mol. Mar. Biol.

Biotechnol., 1: 380-389.

DUNHAM, R. A., WARR, G. W., NICHOLS, A., DUNCAN, P. L., ARGUE, B.,

MIDDLETON, D. and KUCUKTAS, H., 2002. Enhanced bacterial disease resistance

of transgenic channel catfish Ictalurus punctatus possessing cecropin genes. Mar.

Biotechnol., 4: 338-344.

DUNN, D. A., PINKERT, C. A. and KOOYMAN, D. L., 2005. Foundation Review:

Transgenic animals and their impact on the drug discovery industry. Drug Discov.

Today, 10: 757-767.

EL-ZAEEM, S. Y. and ASSEM, S. S., 2004. Application of biotechnology in fish breeding I:

production of highly immune genetically modified Nile tilapia, Oreochromis

niloticus, with accelerated growth by direct injection of shark DNA into skeletal

muscles. Egypt. J. Aquat. Biol. Fish., 8: 67-92.

EPAND, R. and VOGEL, H. J., 1999. Diversity of antimicrobial peptides and their

mechanisms of action. Biochim. Biophys. Acta, 1462: 11-28.

FAO., 2000. The State of the World Fisheries and Aquaculture 2000. Food and Agriculture

Organization of the United Nations, Rome, 142 pp. Retrieved March 08, 2008, from

http://www.fao.org/sof/sofia/index en.htm.

FAO., 2004. Surveillance and Zoning for Aquatic Animal Diseases. SUBASINGHE, R. P.,

McGLADDERY, S. E. and HILL, B. J., (Eds.), FAO fisheries technical paper No.

451. Food and Agriculture Organization of the United Nations, Rome, 73 pp.

FAO., 2006. State of world aquaculture 2006. FAO fisheries technical paper. No. 500. Food

and Agriculture Organization of the United Nations, Rome, 134 pp. Retrieved March

08, 2008, from http://www.fao.org/docrep/009/a0874e/a0874e00.HTM.

FAO., 2007. The State of the World Fisheries and Aquaculture 2006. Food and Agriculture

Organization of the United Nations, Rome, 162 pp. Retrieved March 08, 2008, from

http://www.fao.org/sof/sofia/index en.htm.

Page 13: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

FAO., 2008. FAO Glossary of Biotechnology for Food and Agriculture. Retrieved March 08,

2008, from http://www.fao.org/biotech/index_glossary.asp?lang=en.

FENG, J., SHI, J., SIRIMANNE, S. R., MOUNIER-LEE, C. E. and MAY, S. W., 2000.

Kinetic and stereochemical studies on novel inactivators of C-terminal amidation.

Biochem. J., 350: 521-530.

FERNANDES, J. M., SAINT, N., KEMP, G. D. and SMITH, V. J., 2003. Oncorhyncin III: a

potent antimicrobial peptide derived from the nonhistone chromosomal protein H6 of

rainbow trout Oncorhynchus mykiss. Biochem. J., 373: 621-628.

FERNANDES, J. M., MOLLE, G., KEMP G. D. and SMITH, V. J., 2004. Isolation and

characterisation of oncorhyncin II, a histone H1-derived antimicrobial peptide from

skin secretions of rainbow trout Oncorhynchus mykiss. Dev. Comp. Immunol., 28:

127-138.

FIMLAND, G., EIJSINK, V. G. and NISSEN-MEYER, J., 2002. Comparative studies of

immunity proteins of pediocin-like bacteriocins. Microbiology, 148: 3661-3670.

FINK, J., BOMAN, A., BOMAN, H. G. and MERRIFIELD, R. B., 1989a. Design, synthesis

and antibacterial activity of cecropin-like model peptides. Int. J. Pept. Protein Res.,

33: 412-421.

FINK, J., MERRIFIELD, R. B., BOMAN, A. and BOMAN, H. G., 1989b. The chemical

synthesis of cecropin D and an analog with enhanced antibacterial activity. J. Biol.

Chem., 264: 6260-6267.

FINLAY, B. B. and HANCOCK, R. E. W., 2004. Can innate immunity be enhanced to treat

microbial infections? Nat. Rev. Microbiol., 2: 497-504.

FJALESTAD, K. T., GJEDREM, T. and GJERDE, B., 1993. Genetic improvement of disease

resistance in fish: an overview. Aquaculture, 111: 65-74.

FLEMING, R. E. and SLY, W. S., 2001. Hepcidin: a putative iron-regulatory hormone

relevant to hereditary hemochromatosis and the anemia of chronic disease. Proc.

Natl. Acad. Sci. USA, 98: 8160-8162.

*FLETCHER, G. L., SHEARS, M. A., KING, M. J., GODDARD, S. V., KAO, M. H., DU, S.

J., DAVIES, P. L. and HEW, C. L., 1992. Biotechnology for aquaculture: transgenic

salmon with enhanced growth and freeze resistance. Bull. Aquacult. Assoc. Can., 92:

31-33.

Page 14: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

*FLETCHER, G. L., SHEARS, M. A., YASKOWIAK, E. S., KING, M. J. and GODDARD,

S. V., 2004. Gene transfer: potential to enhance the genome of Atlantic salmon for

aquaculture. Aust. J. Exp. Agri., 44: 1095-1100.

FLORACK, D., ALLEFS, S., BOLLEN, R., BOSCH, D., VISSER, B. and STIEKEMA, W.,

1995. Expression of giant silkmoth cecropin B genes in tobacco. Transgenic Res., 4:

132-141.

FONDA, I., KENIG, M., GABERC-POREKAR, V., PRISTOVAEK, P. and MENART, V.,

2002. Attachment of histidine tags to recombinant tumor necrosis factor-alpha

drastically changes its properties. TheScientificWorldJ., 2: 1312-1325.

FORESTI, F., 2000. Biotechnology and fish culture. Hydrobiologia, 420: 45-47.

FRAENKEL, P. G., TRAVER, D., DONOVAN, A., ZAHRIEH, D. and ZON, L. I., 2005.

Ferroportin 1 is required for normal iron cycling in zebrafish. J. Clin. Invest., 115:

1532-1541.

FRIEDENREICH, H. and SCHARTL, M., 1990. Transient expression directed by

homologous and heterologous promoter and enhancer sequences in fish cells. Nucleic

Acids Res., 18: 3299-3305.

FU, C., CUI, Y., HUNG, S. S. O. and ZHU, Z., 1998. Growth and feed utilization by F4

human growth hormone transgenic carp fed diets with different protein levels. J.

Fish. Biol., 53: 115-129.

GAIANO, N., AMSTERDAM, A., KAWAKAMI, K., ALLENDE, M., BECKER, T. and

HOPKINS, N., 1996. Insertional mutagenesis and rapid cloning of essential genes in

zebrafish. Nature, 383: 829-832.

GALLI, L., 2002. Genetic Modification in Aquaculture-A Review of Potential Benefits and

Risks. Bureau of Rural Sciences, Canada. Retrieved March 14, 2008, from

http://affashop.gov.au/PdfFiles/gm_in_aquaculture.pdf.

GANZ, T., SELSTED, M. E., SZKLAREK, D., HARWIG, S. S., DAHER, K., BAINTON, D.

F. and LEHRER, R. I., 1985. Defensins. Natural peptide antibiotics of human

neutrophils. J. Clin. Invest., 76: 1427-1435.

GAO, D., LI, Z., MURPHY, T. and SAUERBIER, W., 1997. Structure and transcription of

the gene for translation elongation factor 1 subunit alpha of zebrafish (Danio rerio).

Biochim. Biophys. Acta, 1350: 1-5.

Page 15: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

GARVIN, W., HARMS, U., SHEARER, C. AND SIMONNEAUX, L., 2008. Transgenic

Animals. Retrieved March 08, 2008, from http://www.ipn.uni-

kiel.de/eibe/UNIT11EN.PDF.

GHISELLI, R., GIACOMETTI, A., CIRIONI, O., MOCCHEGIANI, F., ORLANDO, F.,

D'AMATO, G., SISTI, V., SCALISE, G. and SABA, V., 2004. Cecropin B enhances

betalactams activities in experimental rat models of Gram-negative septic shock.

Ann. Surg., 239: 251-256.

GILL, J. A., SUMPTER, J. P., DONALDSON, E. M., DYE, H. M., SOUZA, L., BERG, T.,

WYPYCH, J. and LANGLEY, K., 1985. Recombinant chicken and bovine growth

hormones accelerate growth in aquacultured juvenile Pacific salmon Oncorhynchus

kisutch. Bio/Technology, 3: 643-646.

*GOPALAKRISHNAN, V., 1961. Observation on infectious dropsy of Indian carps and its

experimental induction. J. Sci. Ind. Res., 20: 357-358.

GORDON, J. W. and RUDDLE, F. H., 1981. Integration and stable germ line transmission of

genes injected into mouse pronuclei. Science, 214: 1244-1246.

*GORDON, M. S., ANDUR, B. N. and SCHOLANDER, P. F., 1962. Freezing resistance in

some northern fishes. Biol. Bull., 122: 52-62.

GORDON, Y. J., ROMANOWSKI, E. G. and MCDERMOTT, A. M., 2005. A review of

antimicrobial peptides and their therapeutic potential as anti-infective drugs. Curr.

Eye Res., 30: 505-515.

GOUMON, Y., STRUB, J. M., MONIATTE, M., NULLANS, G., POTEUR, L., HUBERT,

P., VAN DORSSELAER, A., AUNIS, D. and METZ-BOUTIGUE, M-H., 1996. The

C-terminal bisphosphorylated proenkephalin-A-(209-237)-peptide from adrenal

medullary chromaffin granules possesses antibacterial activity. Eur. J. Biochem.,

235: 516-525.

GRABHER, C. and WITTBRODT, J., 2007. Meganuclease and transposon mediated

transgenesis in medaka. Genome Biol., 8 [Suppl. 1]: S10

GRABHER, C., HENRICH, T., SASADO, T., ARENZ, A., WITTBRODT, J. and

FURUTANI-SEIKI, M., 2003. Transposon-mediated enhancer trapping in medaka.

Gene, 322: 57-66.

Page 16: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

GRACEY, A. Y., TROLL, J. T. and SOMERO, G. N., 2001. Hypoxia-induced gene

expression profiling in the euryoxic fish Gillichthys mirabilis. Proc. Natl. Acad. Sci.

USA, 98: 1993-1998.

GROSS, M. L., SCHNEIDER, J. F., MOAV, N., MOAV, B., ALVAREZ, C., MYSTER, S.

H., LIU, Z., HALLERMAN, E. M., HACKETT, P. B., GUISE, K. S., FARAS, A. J.

and KAPUSCINSKI, A. R., 1992. Molecular analysis and growth evaluation of

northern pike (Esox lucius) microinjected with growth hormone genes. Aquaculture,

103: 253-273.

GUDMUNDSSON, G. H., LIDHOLM, D. A., ASLING, B., GAN, R. and BOMAN, H. G.,

1991. The cecropin locus. Cloning and expression of a gene cluster encoding three

antibacterial peptides in Hyalophora cecropia. J. Biol. Chem., 266: 11510-11517.

GUYOMARD, R., CHOURROUT, D., LEROUX, C., HOUDEBINE, L. M. and

POURRAIN, F., 1989. Integration and germ line transmission of foreign genes

microinjected into fertilized trout eggs. Biochimie, 71: 857-863.

HACKETT, P. B. and ALVAREZ, M. C., 2000. The molecular genetics of transgenic fish. In:

Recent Advances in Marine Biotechnology: Vol. 4, Aquaculture: Part B-Fishes.

FINGERMAN, M. and NAGABHUSHANAM, R., (Eds.), Oxford & IBH Publishing

Co. Pvt. Ltd., New Delhi, pp. 77-145.

HACKETT, P. B., IZSVAK, Z., IVICS, Z. and CALDOVIC, L., 1999. Development of

genetic tools for transgenic animals. In: Transgenic Animals in Agriculture.

MURRAY, J. D., ANDERSON, G. B., OBERBAUER A. M. and McGLOUGHLIN,

M. M., (Eds.), CABI Publishing, Walliford, pp. 19-35.

*HALLERMAN, E. M., SCHNEIDER, J. F., GROSS, M., FARAS, A. J., HACKETT, P. B.,

GUISE, K. S. and KAPUSCINSKI, A. R., 1988. Enzymatic dechorionation of

walleye, goldfish and northern pike eggs. Trans. Am. Fish. Soc., 117: 456-460.

HAMILTON-MILLER, J. M. T., 2004. Antibiotic resistance from two perspectives: man and

microbe. Int. J. Antimicrobial Agents, 23: 209-212.

HANCOCK, R. E. W. and LEHRER, R., 1998. Cationic peptides: a new source of antibiotics.

Trends Biotechnol., 16: 82-88.

HANCOCK, R. E. W. and CHAPPLE, D. S., 1999. Peptide antibiotics. Antimicrob. Agents

Chemother., 43: 1317-1323.

Page 17: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

HANCOCK, R. E. W. and DIAMOND, G., 2000. The role of cationic antimicrobial peptides

in innate host defences. Trends Microbiol., 8: 402-410.

HANCOCK, R. E. W. and SCOTT, M. G., 2000. The role of antimicrobial peptides in animal

defences. Proc. Natl. Acad. Sci. USA, 97: 8856-8861.

HANCOCK, R. E. W. and ROZEK, A., 2002. Role of membranes in the activities of

antimicrobial cationic peptides. FEMS Microbiol. Lett., 206: 143-149.

HANCOCK, R. E. W. and SAHL, H. G., 2006. Antimicrobial and host-defense peptides as

new anti-infective therapeutic strategies. Nat. Biotechnol., 24: 1551-1557.

HANCOCK, R. E. W., 1997. Peptide antibiotics. Lancet, 349: 418-422.

HANCOCK, R. E. W., 2001. Cationic peptides: effectors in innate immunity and novel

antimicrobials. Lancet Infect. Dis., 1: 156-164.

HANLEY, S., SMITH, T. J., MULLER, F., MACLEAN, N., UZBEKOVA, S., PRUNET, P.

and BRETON, B., 1998. Isolation and functional analysis of the histone H3 promoter

from Atlantic salmon (Salmo salar L.). Mol. Mar. Biol. Biotechnol., 7: 165-172.

HARLOW, ED. and LANE, D., 1988. Antibodies: A Laboratory Manual. Cold Spring Harbor

Laboratory Press. Cold Spring Harbor, New York, 726 pp.

HART, D., FRERICHS, G. N., RAMBAUT, A. and ONIONS, D. E., 1996. Complete

nucleotide sequence and transcriptional analysis of snakehead fish retrovirus. J.

Virol., 70: 3606-3616.

*HASSAN, M., SINDEN, S. L., KOBAYASHI, R. S., NORDEEN, R. O. and OWENS, L.

D., 1993. Transformatiom of potato (Solanum tuberosum) with a gene for an

antibacterial protein, cecropin. Acta Hortic., 336: 127-131.

HEW, C. L. and FLETCHER, G. L., 1992. Transgenic fish. World Scientific Publishing Co.

Pte. Ltd., Singapore, 274 pp.

HEW, C. L. and FLETCHER, G. L., 1997. Transgenic fish for aquaculture. Chem. Ind., 21:

311-314.

HEW, C. L. and FLETCHER, G. L., 2001. The role of aquatic biotechnology in aquaculture.

Aquaculture, 197: 191-204.

HEW, C. L., FLETCHER, G. L. and DAVIES, P. L., 1995. Transgenic salmon: tailoring the

genome for food production. J. Fish. Biol., 46: 1-19.

Page 18: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

HEW, C. L., POON, R., XIONG, F., GAUTHIER, S., SHEARS, M. A., KING, M. J.,

DAVIES, P. L. and FLETCHER, G. L., 1999. Liver-specific and seasonal expression

of transgenic Atlantic salmon harboring the winter flounder antifreeze protein gene.

Transgenic Res., 8: 405-414.

HIGASHIJIMA, S., OKAMOTO, H., UENO, N., HOTTA, Y. and EGUCHI, G., 1997. High-

frequency generation of transgenic zebrafish which reliably express GFP in whole

muscles or the whole body by using promoters of zebrafish origin. Dev. Biol., 192:

289-299.

HIRONO, I., HWANG, J. Y., ONO, Y., KUROBE, T., OHIRA, T., NOZAKI, R. and AOKI,

T., 2005. Two different types of hepcidins from the Japanese flounder Paralichthys

olivaceus. FEBS J., 272: 5257-5264.

HOFFMANN, J. A., REICHHART, J. M. and HETRU, C., 1996. Innate immunity in higher

insects. Curr. Opin. Immunol., 8: 8-13.

HOLAK, T. A., ENGSTROM, A., KRAULIS, P. J., LINDEBERG, G., BENNICH, H.,

JONES, T. A., GRONENBORN, A. M. and CLORE, G. M., 1988. The solution

conformation of the antibacterial peptide cecropin A: a nuclear magnetic resonance

and dynamical simulated annealing study. Biochemistry, 27: 7620-7629.

HOLZSCHU, D. L., MARTINEAU, D., FODOR, S. K., VOGT, V. M., BOWSER, P. R. and

CASEY, J. W., 1995. Nucleotide sequence and protein analysis of a complex piscine

retrovirus, walleye dermal sarcoma virus. J. Virol., 69: 5320-5331.

HOSTETLER, H. A., COLLODI, P. R., DEVLIN, R. H. and MUIR, W. M., 2005. Ecological

risks and benefits of fish transgenic for the phytase gene. In: Meeting Abstracts.

Transgenic Res., 14: 341-360.

HOUDEBINE, L. M. and CHOURROUT, D., 1991. Transgenesis in fish. Experientia, 47:

891-897.

HSIH, M. H., KUO, J. C. and TSAI, H. J., 1997. Optimization of the solubilization and

renaturation of fish growth hormone produced by Escherichia coli. Appl. Microbiol.

Biotechnol., 48: 66-72.

*HU, W., WANG, Y. and ZHU, Z., 2006. A perspective on fish gonad manipulation for

biotechnical applications. Chin. Sci. Bull., 51: 1-7.

Page 19: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

HU, X., CAMUS, A. C., AONO, S., MORRISON, E. E., DENNIS, J., NUSBAUM, K. E.,

JUDD, R. L. and SHI, J., 2007. Channel catfish hepcidin expression in infection and

anemia. Comp. Immunol. Microbiol. Infect. Dis., 30: 55-69.

HUANG, J. M., NAND, I. S., WU, L. Y., YALDA, D., BARTLEY, G., RODRIGUEZ. R.,

LONNERDAL, B. and HUANG, N., 2002. Expression of natural antimicrobial

human lysozyme in rice grains. Mol. Breed., 10: 83-94.

HUANG, P. H., CHEN, J. Y. and KUO, C. M., 2007. Three different hepcidins from tilapia,

Oreochromis mossambicus: Analysis of their expressions and biological functions.

Mol. Immunol., 44: 1922-1934.

HUANG, Y., NORDEEN, R. O., DI, M., OWENS, L. D. and MCBEATH, J. H., 1997.

Expression of an engineered cecropin gene cassette in transgenic tobacco plants

confers disease resistance to Pseudomonas syringae pv. tabaci. Phytopathology, 87:

494-499.

HUGMAN, A., 2006. Hepcidin: an important new regulator of iron homeostasis. Clin. Lab.

Haematol., 28: 75-83.

HULTMARK, D., 1993. Immune reactions in Drosophila and other insects: a model for

innate immunity. Trends Genet., 9: 178-183.

HULTMARK, D., STEINER, H., RASMUNSON, T. and BOMAN, H. G., 1980. Insect

immunity: Purification and properties of three inducible bactericidal proteins from

hemolymph of immunized pupae of Hyalophora cecropia. Eur. J. Biochem., 106: 7-

16.

HULTMARK, D., ENGSTROM, A., BENNICH, H., KAPUR, R. and BOMAN, H. G., 1982.

Insect immunity: isolation and structure of cecropin D and four minor antibacterial

components from cecropia pupae. Eur. J. Biochem., 127: 207-217.

HUNTER, H. N., FULTON, D. B., GANZ, T. and VOGEL, H. J., 2002. The solution

structure of human hepcidin, a peptide hormone with antimicrobial activity that is

involved in iron uptake and hereditary hemochromatosis. J. Biol. Chem., 277: 37597-

37603.

HWANG, E. Y., SEO, J. K., KIM, C. H., GO, H. J., KIM, E. J., CHUNG, J. K., RYU, H. S.

and PARK, N. G., 1999. Purification and characterization of a novel antimicrobial

peptide from the skin of the hagfish Eptatretus burgeri. J. Food Sci. Nutr., 4: 28-32.

Page 20: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

HWANG, G. L., AZIZUR, R. M., ABDUL, R. S., SOHM, F., FARAHMAND, H., SMITH,

A., BROOKS, C. and MACLEAN, N., 2003. Isolation and characterisation of tilapia

β-actin promoter and comparison of its activity with carp β-actin promoter. Biochim.

Biophys. Acta, 1625: 11-18.

HWANG, P. M., ZHOU, N., SHAN, X., ARROWSMITH, C. H. and VOGEL, H. J., 1998.

Three-dimensional solution structure of lactoferricin B, an antimicrobial peptide

derived from bovine lactoferricin. Biochemistry, 27: 7620-7629.

IIJIMA, N., TANIMOTO, N., EMOTO, Y., MORITA, Y., UEMATSU, K., MURAKAMI, T.

and NAKAI, T., 2003. Purification and characterization of three isoforms of

chrysophsin, a novel antimicrobial peptide in the gills of the red sea bream

Chrysophrys major. Eur. J. Biochem., 270: 675-686.

*INDIG, F. E. and MOAV, B., 1992. A prokaryotic gene is expressed in fish cells and persists

in tilapia embryos following microinjection through micropyle. In: Reproduction in

Fish-Basic and Applied Aspects in Endocrinology and Genetics. ZOHAR, Y. and

BRETON, B., (Eds.), INRA Press, Paris, pp. 138-141.

INOUE, K., 1992. Expression of reporter genes introduced by microinjection and

electroporation in fish embryos and fry. Mol. Mar. Biol. Biotechnol., 1: 266-270.

INOUE, K., YAMASHITA, S., HATA, J., KABENO, S., ASADA, S., NAGAHISA, E. and

FUJITA, T., 1990. Electroporation as a new technique for producing transgenic fish.

Cell Differ. Dev., 29: 123-128.

INOUE, K., AKITA, N., SHIBA, T., SATAKE, M. and YAMASHITA, S., 1992. Metal-

inducible activities of metallothionein promoters in fish cells and fry. Biochem.

Biophys. Res. Commun., 185: 1108-1114.

INOUE, S., NAM, B. H., HIRONO, I. and AOKI, T., 1997. A survey of expressed genes in

Japanese flounder (Paralichthys olivaceus) liver and spleen. Mol. Mar. Biol.

Biotechnol., 6: 376-380.

IVICS, Z., HACKETT, P. B., PLASTERK, R. H. and IZSVAK, Z., 1997. Molecular

reconstruction of sleeping beauty, a Tc1-like transposon from fish, and its

transposition in human cells. Cell, 91: 501-510.

IVICS, Z., IZSVÁK, Z. and HACKETT, P. B., 1999. Genetic applications of transposons and

other repetitive elements in zebrafish. Methods Cell Biol., 60: 99-131.

Page 21: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

IYENGAR, A., MULLER, F. and MACLEAN, N., 1996. Regulation and expression of

transgenes in fish-a review. Transgenic Res., 5: 147-166.

IZADPANAH, A. and GALLO, R. L., 2005. Antimicrobial peptides. J. Am. Acad. Dermatol.,

52: 381-390.

IZSVÁK, Z., IVICS, Z. and HACKETT, P. B., 1997. Repetitive elements and their genetic

applications in zebrafish. Biochem. Cell Biol., 75: 507-523.

JACK, R. W., TAGG, J. R. and RAY, B., 1995. Bacteriocins of Gram-positive bacteria.

Microbiol. Rev., 59: 171-200.

JAYNES, J. M., JULIAN, G. R., JEFFERS, G. W., WHITE, K. L. and ENRIGHT, F. M.,

1989. In vitro cytocidal effect of lytic peptides on several transformed mammalian

cell lines. Pept. Res., 2: 157-160.

JAYNES, J. M., NAGPALA, P., DESTEFANO-BELTRAN, L., HUANG, J. H., KIM, J.,

DENNY, T. and CETINER, S., 1993. Expression of a cecropin B lytic peptide

analog in transgenic tobacco confers enhanced resistance to bacterial wilt caused by

Pseudomonas solanacearum. Plant Sci., 89: 43-53.

JENSEN, I., ALBUQUERQUE, A., SOMMER, A-I. and ROBERTSEN, B., 2002. Effect of

poly I:C on the expression of Mx proteins and resistance against infection by

infectious salmon anaemia virus in Atlantic salmon. Fish Shellfish Immunol., 13:

311-326.

JENSSEN, H., HAMILL, P. and HANCOCK, R. E. W., 2006. Peptide antimicrobial agents.

Clin. Microbiol. Rev., 19: 491-511.

*JIA, S. R., XIE, Y., TANG, T., FENG, L. X., CAO, D. S., ZHAO, Y. L., YUAN, J., BAI, Y.

Y., JIANG, C. X. and JAYNES, J. M., 1993. Genetic engineering of Chinese potato

cultivars by introducing antibacterial polypeptide gene. Agriculture, 15: 208-212.

JIN, F., XU, X., ZHANG, W. and GU, D., 2006. Expression and characterization of a

housefly cecropin gene in the methylotrophic yeast, Pichia pastoris. Protein Expr.

Purif., 49: 39-46.

KAAYA, G. P., FLYG, C. and BOMAN, H. G., 1987. Induction of cecropin and attacin-like

antibacterial factors in the hemolymph of Glossina morsitans morsitans. Insect

Biochem., 17: 309-315.

Page 22: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

KANG, D., LUNDSTRÖM, A. and STEINER, H., 1996. Trichoplusia ni attacin A, a

differentially displayed insect gene coding for an antibacterial protein. Gene, 174:

245-249.

KAPUSCINSKI, A. R., 2005. Current scientific understanding of the environmental biosafety

of transgenic fish and shellfish. Rev. Sci. Tech., 24: 309-322.

KARUNASAGAR, I. and KARUNASAGAR, I., 1994. Bacteriological studies on epizootic

ulcerative syndrome in India. In: Proceedings of ODA Regional Seminar on

Epizootic Ulcerative Syndrome. ROBERTS, R. J., CAMPBELL, B. and MACRAE,

I. H., (Eds.), Aquatic Animal Health Research Institute, Bangkok, pp. 158-170.

KARUNASAGAR, I., ALI, P. K. M. M., JEYASEKARAN, G. and KARUNASAGAR, I.,

1986. Ulcerative form of Aeromonas hydrophila infection of Catla catla. Curr. Sci.,

55: 1194-1195.

KARUNASAGAR, I., ROSALIND, G. M., KARUNASAGAR, I. and RAO, K. G., 1989.

Aeromonas hydrophila septicaemia of Indian major carps in some commercial fish

farms of West Godavari District, Andhra Pradesh. Curr. Sci., 58: 1044-1045.

KARUNASAGAR, I., KARUNASAGAR, I. and PAI, R., 1992. Systemic Citrobacter

freundii infection in common carp, Cyprinus carpio L., fingerlings. J. Fish. Dis., 15:

95-98.

KARUNASAGAR, I., PAI, R., MALATHI, G. R. and KARUNASAGAR, I., 1994. Mass

mortality of Penaeus monodon due to antibiotic resistant Vibrio harveyi infection.

Aquaculture, 128: 203-209.

KARUNASAGAR, I., SUGUMAR, G. and KARUNASAGAR, I., 1995. Virulence characters

of Aeromonas spp. isolated from EUS-affected fish. In: Diseases in Asian

Aquaculture II. SHARIFF, M., ARTHUR, J. R. and SUBASINGHE, R., (Eds), Fish

Health Section, Asian Fisheries Society, Manila, pp. 307-314.

KARUNASAGAR, I., KARUNASAGAR, I. and OTTA, S. K., 2003. Disease problems

affecting fish in tropical environments. J. Appl. Aquacult., 13: 231-250.

KAWANO, K., YONEYA, T., MIYATA, T., YOSHIKAWA, K., TOKUNAGA, F.,

TERADA, Y. and IWANAGA, S., 1990. Antimicrobial peptide, tachyplesin I,

isolated from hemocytes of the horseshoe crab (Tachypleus tridentatus). J. Biol.

Chem., 265: 15365-15367.

Page 23: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

KELLY, D. G., WOLTERS, W. R., JAYNES, J. M. and NEWTON, J. C., 1993. Enhanced

disease resistance to enteric septicemia in channel catfish, Ictalurus punctatus,

administered lytic peptide. J. Appl. Aquacult., 3: 25-34.

KELLY, D., WOLTERS, W. R. and JAYNES, J. M., 1990. Effect of lytic peptides on

selected fish bacterial pathogens. J. Fish Dis., 13: 317-321.

KHOO, H. -W., ANG, L. -H., LIM, H. -B. and WONG, K. -Y., 1992. Sperm cells as vectors

for introducing foreign DNA into zebrafish. Aquaculture, 107: 1-19.

KIM, C. R., LEE, Y. H., BANG, I. S., KIM, E. S., KANG, C. S., YUN, C. Y. and LEE, I. H.,

2000. cDNA cloning and antibacterial activities of cecropin D-like peptides from

Agrius convolvuli. Arch. Insect Biochem. Physiol., 45: 149-155.

KINOSHITA, M., KANI, S., OZATO, K. and WAKAMATSU, Y., 2000. Activity of the

medaka translation elongation factor 1 alpha-A promoter examined using the GFP

gene as a reporter. Dev. Growth Differ., 42: 469-478.

KJUUL, A. K., BÜLLESBACH, E. E., ESPELID, S., DUNHAM, R., JØRGENSEN, T. Ø.,

WARR, G. W. and STYRVOLD, O. B., 1999. Effects of cecropin peptides on

bacteria pathogenic to fish. J. Fish Dis., 22: 387-394.

KLAENHAMMER, T. R., 1988. Bacteriocins of lactic acid bacteria. Biochimie, 70: 337-349.

KLEIN, T. M., WOLF, E. D., WU, R. and SANFORD, J. C., 1987. High-velocity

microprojectiles for delivering nucleic acids into living cells. Nature, 327: 70-73.

KOCZULLA, A. R. and BALS, R., 2003. Antimicrobial peptides: current status and

therapeutic potential. Drugs, 63: 389-407.

*KOLESNIKOV, V. A., ALIMOV, A. A., BARMINTSEV, V. A., BENIUMOV, A. O.,

ZELENINA, I. A., KRASNOV, A. M., DZHABUR, R. and ZELENIN, A. V., 1990.

High velocity mechanical injection of foreign DNA into fish oocytes. Genetika, 26:

2122-2126.

KOLIARAKI, V., MARINOU, M., SAMIOTAKI, M., PANAYOTOU, G.,

PANTOPOULOS, K. and MAMALAKI, A., 2008. Iron regulatory and bactericidal

properties of human recombinant hepcidin expressed in Pichia pastoris. Biochimie,

90: 726-735.

Page 24: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

KOLTER, R. and MORENO, F., 1992. Genetics of ribosomally synthesized peptide

antibiotics. Annu. Rev. Microbiol., 46: 141-163.

*KRASNOV, A., AGREN, J. J., PITKANEN, T. I. and MOLSA, H., 1999. Transfer of

growth hormone (GH) transgenes into Arctic charr (Salvelinus alpinus L.) II.

Nutrient partitioning in rapidly growing fish. Genet. Anal., 15: 99-105.

KRAUSE, A., NEITZ, S. and MAGERT, H. J., 2000. LEAP-1, a novel highly disulfide-

bonded human peptide, exhibits antimicrobial activity. FEBS Lett., 480: 147-150.

KREN, B. T., BANDYOPADHYAY, P. and STEER, C. J., 1998. In vivo site-directed

mutagenesis of the factor IX gene by chimeric RNA/DNA oligonucleotides. Nat.

Med., 4: 285-290.

KULAKSIZ, H., GEHRKE, S. G., JANETZKO, A., ROST, D., BRUCKNER, T.,

KALLINOWSKI, B. and STREMMEL, W., 2004. Pro-hepcidin: expression and cell

specific localisation in the liver and its regulation in hereditary haemochromatosis,

chronic renal insufficiency, and renal anaemia. Gut, 53: 735-743.

KYLSTEN, P., SAMAKOVLIS, C. and HULTMARK, D., 1990. The cecropin locus in

Drosophila; a compact gene cluster involved in the response to infection, EMBO. J.,

9: 217-224.

*LAEMMLI, U. K., 1970. Cleavage of structural proteins during assembly of the head of

bacteriophage T4. Nature, 227: 680-685.

LAI, R., LIU, H., HUI LEE, W. and ZHANG, Y., 2002. An anionic antimicrobial peptide

from toad Bombina maxima. Biochem. Biophys. Res. Commun., 295: 796-799.

LANDON, C., SODANO, P., HETRU, C., HOFFMANN, J. and PTAK, M., 1997. Solution

structure of drosomycin, the first inducible antifungal protein from insects. Protein

Sci., 6: 1878-1884.

LAUTH, X., BABON, J. J., STANNARD, J. A., SINGH, S., NIZET, V., CARLBERG, J. M.,

OSTLAND, V. E., PENNINGTON, M. W., NORTON, R. S. and WESTERMAN,

M. E., 2005. Bass hepcidin synthesis, solution structure, antimicrobial activities and

synergism, and in vivo hepatic response to bacterial infections. J. Biol. Chem., 280:

9272-9282.

Page 25: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

LAUTH, X., SHIKE, H., BURNS, J. C., WESTERMAN, M. E., OSTLAND, V. E.,

CARLBERG, J. M., VAN OLST, J. C., NIZET, V., TAYLOR, S. W., SHIMIZU, C.

and BULET, P., 2002. Discovery and characterization of two isoforms of

moronecidin, a novel antimicrobial peptide from hybrid striped bass. J. Biol. Chem.,

277: 5030-5039.

LAVITRANO, M. L., CAMAIONI, A., FAZIO, V. M., DOLCI, S., FARACE, M. G. and

SPADAFORA, C., 1989. Sperm cells as vectors for introducing foreign DNA into

eggs: genetic transformation in mice. Cell, 57: 717-723.

LEE, J. Y., BOMAN, A., SUN, C. X., ANDERSSON, M., JORNVALL, H., MUTT, V. and

BOMAN, H. G., 1989. Antibacterial peptides from pig intestine: isolation of a

mammalian cecropin. Proc. Natl. Acad. Sci, USA, 86: 9159-9162.

LEEM, J. Y., JEONG, I. L., PARK, K. T. and PARK, H. Y., 1999. Isolation of p-

hydroxycinnamaldehyde as an antibacterial substance from the saw fly, Acantholyda

parki S. FEBS Lett., 442: 53-56.

LEMA, M. A. and BURACHIK, M., 2008. Safety assessment of food products from r-DNA

animals. Comp. Immunol. Microbiol. Infect. Dis., [Epub ahead of print].

LEMAÎTRE, C., ORANGE, N., SAGLIO, P., SAINT, N., GAGNON, J. and MOLLE, G.,

1996. Characterization and ion channel activities of novel antibacterial proteins from

the skin mucosa of carp (Cyprinus carpio). Eur. J. Biochem., 240:143-149.

*LEVY, J. A., MARINS, L. F. and SANCHEZ, A., 2000. Gene transfer technology in

aquaculture. Hydrobiologia, 420: 91-94.

LEVY, S. B. and MARSHALL, B., 2004. Antibacterial resistance worldwide: causes,

challenges and responses. Nat. Med., 10: S122-129.

LIANG, Y. L., WANG, J. X., ZHAO, X. F., DU, X. J. and XUE, J. F., 2006. Molecular

cloning and characterization of cecropin from the housefly (Musca domestica) and its

expression in Escherichia coli. Dev. Comp. Immunol., 30: 249-257.

LIN, S., GAIANO, N., CULP, P., BURNS, J. C., FRIEDMANN, T., YEE, J. K. and

HOPKINS, N., 1994. Integration and germ-line transmission of a pseudotyped

retroviral vector in zebrafish. Science, 265: 666-669.

Page 26: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

LIU, Z. J., ZHU, Z. Y., ROBERG, K., FARAS, A., GUISE, K., KAPUSCINSKI, A. R. and

HACKETT, P. B., 1990a. Isolation and characterization of β-actin gene of carp

(Cyprinus carpio). DNA Seq., 1: 125-136.

LIU, Z. J., MOAV, B., FARAS, A. J., GUISE, K. S., KAPUSCINSKI, A. R. and HACKETT,

P. B., 1990b. Functional analysis of elements affecting expression of the β-actin gene

of carp. Mol. Cell. Biol., 10: 3432-3440.

LIU, Z. J., MOAV, B., FARAS, A. J., GUISE, K. S., KAPUSCINSKI, A. R. and HACKETT,

P. B., 1990c. Development of expression vectors for transgenic fish. Bio/Technology,

8: 1268-1272.

LOWENBERGER, C., CHARLET, M., VIZIOLI, J., KAMAL, S., RICHMAN, A.,

CHRISTENSEN, B. M. and BULET, P., 1999. Antimicrobial activity spectrum,

cDNA cloning and mRNA expression of a newly isolated member of the cecropin

family from the mosquito vector Aedes aegypti. J. Biol. Chem., 274: 20092-20097.

LOWRY, O. H., ROSEBROUGH, N. J., FARR, A. L. and RANDALL, R. J., 1951. Protein

measurement with the Folin phenol reagent. J. Biol. Chem., 193: 265-275.

LU, J. K., CHEN, T. T., CHRISMAN, C. L., ANDRISANI, O. M. and DIXON, J. E., 1992.

Integration, expression and germ-line transmission of foreign growth hormone genes

in medaka (Oryzias latipes). Mol. Mar. Biol. Biotechnol., 1: 366-375.

LU, J. K., FU, B. H., WU, J. L. and CHEN, T. T., 2002. Production of transgenic silver sea

bream (Sparus sarba) by different gene transfer methods. Mar. Biotechnol., 4: 328-

337.

LUGARDON, K., RAFFNER, R., GOUMON, Y., CORTI, A., DELMAS, A., BULET, P.,

AUNIS, D. and METZ-BOUTIGUE, M. H., 2000. Antibacterial and antifungal

activities of vasostatin-1, the N-terminal fragment of chromogranin A. J Biol Chem.,

275: 10745-10753.

MACLEAN, N. and LAIGHT, R. J., 2000. Transgenic fish: an evaluation of benefits and

risks. Fish Fish., 1: 146-172.

MACLEAN, N. and PENMAN, D., 1990. The application of gene manipulation to

aquaculture. Aquaculture, 85: 1-20.

MACLEAN, N., PENMAN, D. and ZHU, Z., 1987. Introduction of novel genes into fish.

Bio/Technology, 5: 257-261.

Page 27: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

MAO, W., WANG, Y., WANG, W., WU, B., FENG, J. and ZHU, Z., 2004. Enhanced

resistance to Aeromonas hydrophila infection and enhanced phagocytic activities in

human lactoferrin-transgenic grass carp. Aquaculture, 242: 93-103.

MARSHALL, S. H. and ARENAS, G., 2003. Antimicrobial peptides: A natural alternative to

chemical antibiotics and a potential for applied biotechnology. Electron. J.

Biotechnol., 6: 271-284. Retrieved April 14, 2008, from

http://www.ejbiotechnology.info/content/vol6/issue3/full/1/index.html#114.

MARTINEAU, D., BOWSER, P. R., RENSHAW, R. R. and CASEY, J. W., 1992. Molecular

characterization of a unique retrovirus associated with a fish tumor. J. Virol., 66:

596-599.

MARTINEZ, R., ESTRADA, M. P., BERLANGA, J., GUILLEN, I., HERNANDEZ, O.,

CABRERA, E., PIMENTEL, R., MORALES, R., HERRERA, F., MORALES, A.,

PINA, J. C., ABAD, Z., SANCHEZ, V., MELAMED, P., LLEONART, R. and DE

LA FUENTE, J., 1996. Growth enhancement in transgenic tilapia by ectopic

expression of tilapia growth hormone. Mol. Mar. Biol. Biotechnol., 5: 62-70.

MARTINEZ, R., JUNCAL, J., ZALDIVAR, C., ARENAL, A., GUILLEN, I., MORERA, V.,

CARRILLO, O., ESTRADA, M., MORALES, A. and ESTRADA, M. P., 2000.

Growth efficiency in transgenic tilapia (Oreochromis sp.) carrying a single copy of

an homologous cDNA growth hormone. Biochem. Biophys. Res. Commun., 267:

466-472.

*MATTICK, A. T. R. and HIRSCH, A., 1947. Further observations on an inhibitory

substance (nisin) from lactic streptococci. Lancet, ii: 5-7.

MERRIFIELD, R. B., MERRIFIELD, E. L., JUVVADI, P., ANDREU, D. and BOMAN, H.

G., 1994. Design and synthesis of antimicrobial peptides. In: Antimicrobial Peptides.

BOMAN, H. G., MARSH, J. and GOODE, J. A., (Eds.), Wiley InterScience, New

York, pp. 5-26.

MILLER, N. W., RYCYZYN, M. A., WILSON, M. R., WARR, G. W., NAFTEL, J. P. and

CLEM, L. W., 1994. Development and characterization of channel catfish long term

B cell lines. J. Immunol., 152: 2180-2189.

Page 28: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

MITRA, A., FOSTER-FREY, J., REXROAD, C. E, 3rd., WELLS, K. D. and WALL, R. J.,

2003. Molecular characterization of lysozyme type II gene in rainbow trout

(Oncorhynchus mykiss): evidence of gene duplication. Anim. Biotechnol., 14: 7-12.

MOAV, B., LIU, Z., GROLL, Y. and HACKETT, P. B., 1992. Selection of promoters for

gene transfer into fish. Mol. Mar. Biol. Biotechnol., 1: 338-345.

MOORE, K. S., WEHRLI, S., RODER, H., ROGERS, M., FORREST, Jr. J. N.,

MCCRIMMON, D. and ZASLOFF, M., 1993. Squalamine: an aminosterol antibiotic

from the shark. Proc. Natl. Acad. Sci. USA, 90: 1354-1358.

MORISHIMA, I., SUGINAKA, S., UENO, T. and HIRANO, H., 1990. Isolation and

structure of cecropins, inducible antibacterial peptides from silkworm Bombyx mori.

Comp. Biochem. Physiol., 95B: 551-554.

MÜLLER, F., IVICS, Z., ERDELYI, F., PAPP, T., VÁRADI, L., HORVATH, L. and

MACLEAN, N., 1992. Introducing foreign genes into fish eggs with electroporated

sperm as a carrier. Mol. Mar. Biol. Biotech., 1: 276-281.

MÜLLER, F., LELE, Z., VÁRADI, L., MENCZEL, L. and ORBÁN, L., 1993. Efficient

transient expression system based on square pulse electroporation and in vivo

luciferase assay of fertilized fish eggs. FEBS Lett., 324: 27-32.

MULLER, S., ADOMEIT, A., KAUFMANN, R., APPELHANS, H., PASSOW, H.,

REISSMANN, S. and LIEBMANN, C., 2000. Expression and functional

characterization of a pHis-tagged human bradykinin B2 receptor in COS-7 cells.

Biol. Chem., 381: 343-347.

MURAKAMI, Y., MOTOHASHI, K., YANO, K., IKEBUKURO, K., YOKOYAMA, K.,

TAMIYA, E. and KARUBE, I., 1994. Micromachined electroporation system for

transgenic fish. J. Biotechnol., 34: 35-42.

NAGASHIMA, Y., KIKUCHI, N., SHIMAKURA, K. and SHIOMI, K., 2003. Purification

and characterization of an antibacterial protein in the skin secretion of rockfish

Sebastes schlegeli. Comp. Biochem. Physiol., C: Toxicol. Pharmacol., 136: 63-71.

NAM, Y. K., NOH, J. K., CHO, Y. S., CHO, H. J., CHO, K. N., KIM, C. G. and KIM, D. S.,

2001. Dramatically accelerated growth and extraordinary gigantism of transgenic

mud loach Misgurnus mizolepis. Transgenic Res., 10: 353-362.

Page 29: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

NAM, Y. K., CHO, Y. S., CHO, J. C. and KIM, D. S., 2002. Accelerated growth performance

and stable germline transmission in androgenetically derived homozygous transgenic

mud loach, Misgurnus mizolepis. Aquaculture, 209: 257-270.

NEMETH, E., PREZA, G. C., JUNG, C. L., KAPLAN, J., WARING, A. J. and GANZ, T.,

2006. The N-terminus of hepcidin is essential for its interaction with ferroportin:

structure-function study. Blood, 107: 328-333.

NEUMANN, E., SCHAEFER-RIDDER, M., WANG, Y. and HOFSCHNEIDER, P. H., 1982.

Gene transfer into mouse lyoma cells by electroporation in high electric fields.

EMBO J., 1: 841-845.

NICOLAS, G., BENNOUN, M., DEVAUX, I., BEAUMONT, C., GRANDCHAMP, B.,

KAHN, A. and VAULONT, S., 2001. Lack of hepcidin gene expression and severe

tissue iron overload in upstream stimulatory factor 2 (Usf2) knockout mice. Proc.

Natl. Acad. Sci. USA, 98: 8780-8785.

NICOLAS, G., BENNOUN, M., PORTEU, A., MATIVET, S., BEAUMONT, C.,

GRANDCHAMP, B., SIRITO, M., SAWADOGO, M., KAHN, A. and VAULONT,

S., 2002a. Severe iron deficiency anemia in transgenic mice expressing liver

hepcidin. Proc. Natl. Acad. Sci. USA, 99: 4596-4601.

NICOLAS, G., CHAUVET, C., VIATTE, L., DANAN, J. L., BIGARD, X., DEVAUX, I.,

BEAUMONT, C., KAHN, A. and VAULONT, S., 2002b. The gene encoding the

iron regulatory peptide hepcidin is regulated by anemia, hypoxia, and inflammation.

J. Clin. Invest., 110: 1037-1044.

NICOLAS, P. and MOR, A., 1995. Peptide as weapons against microorganisms in the

chemical defense system of vertebrates. Annu. Rev. Microbiol., 49: 277-304.

NIEMANN, H. and KUES, W. A., 2000. Transgenic livestock: premises and promises. Anim.

Reprod. Sci., 60-61: 277-293.

NOGA, E. J. and SILPHADUANG, U., 2003. Piscidins: a novel family of peptide antibiotics

from fish. Drug News Perspect., 16: 87-92.

NOH, J. K., CHO, K. N., HAN, E. H., KIM, A., LEE, J. S., KIM, D. S. and KIM, C. G., 2003.

Genomic cloning of mud loach Misgurnus mizolepis (Cypriniformes, Cobitidae) β-

actin gene and usefulness of its promoter region for fish transgenesis. Mar.

Biotechnol., 5: 244-252.

Page 30: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

OIE., 2008. OIE Listed Diseases. Retrieved March 28, 2008, from

http://www.oie.int/eng/maladies/en_classification2008.htm#ListeOIE.

*ONO, H., HIROSE, E., MIYAZAKI, K., YAMAMOTO, H. and MATSUMOTO, J., 1997.

Transgenic medaka fish bearing the mouse tyrosinase gene: expression and

transmission of the transgene following electroporation of the orange-colored

variant. Pigment Cell Res., 10: 168-175.

OREN, Z. and SHAI, Y., 1996. A class of highly potent antibacterial peptides derived from

pardaxin, a pore-forming peptide isolated from Moses sole fish Pardachirus

marmoratus. Eur. J. Biochem., 237: 303-310.

OSCÁRIZ, J. C. and PISABARRO, A. G., 2001. Classification and mode of action of

membrane-active bacteriocins produced by Gram-positive bacteria. Int. Microbiol.,

4: 13-19.

OURTH, D. D. and CHUNG, K. T., 2004. Purification of antimicrobial factor from granules

of channel catfish peripheral blood leucocytes. Biochem. Biophys. Res. Commun.,

313: 28-36.

OZATO, K., KONDOH, H., INOHARA, H., IWAMATSU, T., WAKAMATSU, Y. and

OKADO, T. S., 1986. Production of transgenic fish: introducton and expression of

chicken crystallin gene in medaka embryos. Cell Differ., 19: 237-244.

PAETZEL, M., KARLA, A., STRYNADKA, N. C. and DALBEY, R. E., 2002. Signal

peptidases. Chem. Rev., 102: 4549-4580.

PALMITER, R. D., BRINSTER, R. L., HAMMER, R. E., TRUMBAUER, M. E.,

ROSENFELD, M. G., BIRNBERG, N. C. and EVANS, R. M., 1982. Dramatic

growth of mice that develop from eggs microinjected with metallothionein-growth

hormone fusion genes. Nature, 300: 611-615.

PANDIAN, T. J. and VENUGOPAL, T., 2005. Contribution to transgenesis in Indian major

carp Labeo rohita. In: Fish Genetics and Aquaculture Biotechnology. PANDIAN, T.

J., STRUSSMANN, C. A. and MARIAN, M. P., (Eds.), Oxford & IBH Publishing

Co. Pvt. Ltd., New Delhi, pp. 1-20.

PANDIAN, T. J., KAVUMPURATH, S., MATHAVAN, S. and DHARMALINGAM, K.,

1991. Microinjection of rat growth-hormone gene into zebrafish egg and production

of transgenic zebrafish. Curr. Sci., 60: 596-600.

Page 31: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

PARISH, C. A., JIANG, H., TOKIWA, Y., BEROVA, N., NAKANISHI, K., MCCABE, D.,

ZUCKERMAN, W., XIA, M. M. and GABAY, J. E., 2001. Broad-spectrum

antimicrobial activity of hemoglobin. Bioorg. Med. Chem., 9: 377-382.

PARK, C. B., LEE, J. H., PARK, I. Y., KIM, M. S. and KIM, S. C., 1997. A novel

antimicrobial peptide from the loach, Misgurnus anguillicaudatus. FEBS Lett., 411:

173-178.

PARK, C. H., VALORE, E. V., WARING, A. J. and GANZ, T., 2001. Hepcidin, a urinary

antimicrobial peptide synthesized in the liver. J. Biol. Chem., 276: 7806-7810.

PARK, I. Y., PARK, C. B., KIM, M. S. and KIM S. C., 1998. Parasin I, an antimicrobial

peptide derived from histone H2A in the catfish Parasilurus asotus. FEBS Lett., 437:

258-262.

PATIL, J. G. and KHOO, H. W., 1996. Nuclear internalization of foreign DNA by zebrafish

spermatozoa and its enhancement by electroporation. J. Exp. Zool., 274: 121-129.

PENMAN, D. J., IYENGAR, A., BEECHING, A. J., RAHMAN, A., SULAIMAN, Z. and

MACLEAN, N., 1991. Patterns of transgene inheritance in rainbow trout

(Oncorhynchus mykiss). Mol. Reprod. Dev., 30: 201-206.

PIGEON, C., ILYIN, G., COURSELAUD, B., LEROYER, P., TURLIN, B., BRISSOT, P.

and LOREAL, O., 2001. A new mouse liver-specific gene, encoding a protein

homologous to human antimicrobial peptide hepcidin, is overexpressed during iron

overload. J. Biol. Chem., 276: 7811-7819.

PITKANEN, T. I., KRASNOV, A., REINISALO, M. and MOLSA, H., 1999a. Transfer and

expression of glucose transporter and hexokinase genes in salmonid fish.

Aquaculture, 173: 319-332.

*PITKANEN, T. I., KRASNOV, A., TEERIJOKI, H. and MOLSA, H., 1999b. Transfer of

growth hormone (GH) transgenes into Arctic charr (Salvelinus alpinus L.) - I.

Growth response to various GH constructs. Genet. Anal., 15: 91-98.

POWERS, D. A., HEREFORD, L., COLE, T., CHEN, T. T., LIN, C. M., KIGHT, K.,

CREECH, K. and DUNHAM, R., 1992. Electroporation: a method for transferring

genes into the gametes of zebrafish (Brachydanio rerio), channel catfish (Ictalurus

punctatus) and common carp (Cyprinus carpio). Mol. Mar. Biol. Biotechnol., 1: 301-

308.

Page 32: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

POWERS, J. P. S. and HANCOCK, R. E. W., 2003. The relationship between peptide

structure and antibacterial activity. Peptides, 24: 1681-1691.

PÜTSEP, K., NORMARK, S. and BOMAN, H. G., 1999. The origin of cecropins;

implications from synthetic peptides derived from ribosomal protein L1. FEBS Lett.,

451: 249-252.

QIAGEN., 2003. The QIAexpressionist. QIAGEN GmbH, Hilden, 126 pp.

RAHMAN, A. and MACLEAN, N., 1992a. Fish transgene expression by direct injection into

fish muscle. Mol. Mar. Biol. Biotechnol., 1: 286-289.

RAHMAN, M. A. and MACLEAN, N., 1992b. Production of transgenic tilapia (Oreochromis

niloticus) by one-cell-stage microinjection. Aquaculture, 105: 219-232.

*RAHMAN, A. and MACLEAN, N., 1998. Production of lines of growth enhanced

transgenic tilapia (Oreochromis niloticus) expressing a novel piscine growth

hormone gene. In: New Developments in Marine Biotechnology. LE GAL, Y. and

HALVORSON, H. O., (Eds.), Plenum Press, New York, pp. 19-28.

RAHMAN, M. A., MAK, R., AYAD, H., SMITH, A. and MACLEAN, N., 1998. Expression

of a novel piscine growth hormone gene results in growth enhancement in transgenic

tilapia (Oreochromis niloticus). Transgenic Res., 7: 357-369.

RAHMAN, M. A., RONYAI, A., ENGIDAW, B. Z., JAUNCEY, K., HWANG, G. L.,

SMITH, A., RODERICK, E., PENMAN, D., VARADI, L. and MACLEAN, N.,

2001. Growth and nutritional trials on transgenic Nile tilapia containing an

exogenous fish growth hormone gene. J. Fish. Biol., 59: 62-78.

RAO, X. C., LI, S., HU, J. C., JIN, X. L., HU, X. M., HUANG, J. J., CHEN, Z. J., ZHU, J. M.

and HU, F. Q., 2004. A novel carrier molecule for high-level expression of peptide

antibiotics in Escherichia coli. Protein Expr. Purif., 36: 11-18.

RASMUSSEN, R. S. and MORRISSEY, M. T., 2007. Biotechnology in aquaculture:

transgenics and polyploidy. Compr. Rev. Food Sci. Food Saf., 6: 2-16.

*RAYMOND, J. A., 1991. Inhibition of ice crystal growth by fish antifreezes. In: ACS

Symposium Series. Serial No. 444. American Chemical Society, USA, pp. 249-255.

Page 33: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

REDDY, K. V. R., YEDERY, R. D. and ARANHA, C., 2004. Antimicrobial peptides:

premises and promises peptides: basic facts and emerging concepts. Int. J.

Antimicrob. Agents, 24: 536-547.

REDDY, P. V. G. K., 1999. Genetic Resources of Indian Major Carps. FAO Fisheries

Technical Paper. No. 387. Food and Agriculture Organization of the United Nations,

Rome, 76 pp.

REN, H. L., WANG, K. J., ZHOU, H. L. and YANG, M., 2006. Cloning and organisation

analysis of a hepcidin-like gene and cDNA from Japan sea bass, Lateolabrax

japonicus. Fish Shellfish Immunol., 21: 221-227.

RICHARDS, R. C., O’NEIL, D. B., THIBAULT, P. and EWART, K. V., 2001. Histone H1:

an antimicrobial protein of Atlantic salmon (Salmo salar). Biochem. Biophys. Res.

Commun., 284: 549-555.

RILEY, M. A., 1998. Molecular mechanisms of bacteriocin evolution. Annu. Rev. Genet., 32:

255-278.

ROBINETTE, D., WADA, S., ARROLL, T., LEVY, M. G., MILLER, W. L. and NOGA, E.

J., 1998. Antimicrobial activity in the skin of the channel catfish Ictalurus punctatus:

characterization of broad-spectrum histone-like antimicrobial proteins. Cell. Mol.

Life Sci., 54: 467-475.

RODRIGUES, P. N., VÁZQUEZ-DORADO, S., NEVES, J. V. and WILSON, J. M., 2006.

Dual function of fish hepcidin: response to experimental iron overload and bacterial

infection in sea bass (Dicentrarchus labrax). Dev. Comp. Immunol., 30: 1156-1167.

*ROKKONES, E., ALESTRØM, P., SKJERVOLD, H. and GAUTVIK, K. M., 1985.

Development of a technique for microinjection of DNA into salmonid eggs. Acta

Physiol. Scand., 124 [Suppl 542]: 417.

ROSETTO, M., MANETTI, A. G., MARCHINI, D., DALLAI, R., TELFORD, J. L. and

BALDARI, C. T., 1993. Sequences of two cDNA clones from the medfly Ceratitis

capitata encoding antibacterial peptides of the cecropin family. Gene, 134: 241-243.

ROSS, D. A., MAGOR, B. G., MIDDLETON, D. L., WILSON, M. R., MILLER, N. W.,

CLEM, L. W. and WARR, G. W., 1998. Characterization of Oct2 from the channel

catfish: functional preference for a variant octamer motif. J. Immunol., 160: 3874-

3882.

Page 34: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

ROY, C. N., MAK, H. H., AKPAN, I., LOSYEV, G., ZURAKOWSKI, D. and ANDREWS,

N. C., 2007. Hepcidin antimicrobial peptide transgenic mice exhibit features of the

anemia of inflammation. Blood, 109: 4038-4044.

RUMLOVÁ, M., BENEDÍKOVÁ, J., CUBÍNKOVÁ, R., PICHOVÁ, I. and RUML, T., 2001.

Comparison of classical and affinity purification techniques of Mason-Pfizer monkey

virus capsid protein: The alteration of the product by an affinity tag. Protein Expr.

Purif., 23: 75-83.

SAITO, A., UEDA, K., IMAMURA, M., ATSUMI, S., TABUNOKI, H., MIURA, N.,

WATANABE, A., KITAMI, M. and SATO, R., 2005. Purification and cDNA

cloning of a cecropin from the longicorn beetle, Acalolepta luxuriosa. Comp.

Biochem. Physiol. B: Biochem. Mol. Biol., 142: 317-323.

SALZET, M., 2002. Antimicrobial peptides are signaling molecules. Trends Immunol., 23:

283-284.

SAMBROOK, J., FRITSCH, E. F. and MANIATIS, T., 1989. Molecular Cloning: A

Laboratory Manual, 2nd Ed. Cold Spring Harbor Laboratory Press, Cold Spring

Harbor, New York, 2344 pp.

SARMASIK, A. and CHEN, T. T., 2003. Bactericidal activity of cecropin B and cecropin P1

expressed in fish cells (CHSE-214): application in controlling fish bacterial

pathogens. Aquaculture, 220: 183-194.

SARMASIK, A., WARR, G. and CHEN, T. T., 2002. Production of transgenic medaka with

increased resistance to bacterial pathogens. Mar. Biotechnol., 4: 310-322.

SCHÄGGER, H. and VON JAGOW, G., 1987. Tricine-sodium dodecyl sulfate

polyacrylamide gel electrophoresis for the separation of proteins in the range from 1-

100 kDalton. Anal. Biochem., 166: 368-379.

*SCHÄGGER, H., 2003. SDS electrophoresis techniques. In: Membrane Protein Purification

and Crystallization. A Practical Guide, 2nd Ed. HUNTE, C., VON JAGOW, G. and

SCHÄGGER, H., (Eds.), Academic Press, San Diego, pp. 4.85-4.103.

SCHÄGGER, H., 2006. Tricine-SDS-PAGE. Nat. Protoc., 1: 16-22.

SCHILLINGER, U., GEISEN, R. and HOLZAPFEL, W. H., 1996. Potential of antagonistic

microorganisms and bacteriocins for the biological preservation of food. Trends

Food Sci. Technol., 7: 158-164.

Page 35: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

SCHITTEK, B., HIPFEL, R., SAUER, B., BAUER, J., KALBACHER, H., STEVANOVIC,

S., SCHIRLE, M., SCHROEDER, K., BLIN, N., MEIER, F., RASSNER, G. and

GARBE, C., 2001. Dermcidin: a novel human antibiotic peptide secreted by sweat

glands. Nature Immunol., 2: 1133-1137.

*SCHOLANDER, P. F., VAN DAM, L., KANWISHER, J. W., HAMMEL, H. T. and

GORDON, M. S., 1957. Supercooling and osmoregulation in Arctic fish. J. Cell.

Comp. Physiol., 49: 5-24.

SHAI, Y., 1999. Mechanism of the binding, insertion and destabilization of phospholipid

bilayer membranes by α-helical antimicrobial and cell non-selective membrane-lytic

peptides. Biochim. Biophys. Acta, 1462: 55-70.

SHARMA, A., SHARMA, R., IMAMURA, M., YAMAKAWA, M. and MACHII, H., 2000.

Transgenic expression of cecropin B, an antibacterial peptide from Bombyx mori,

confers enhanced resistance to bacterial leaf blight in rice. FEBS Lett., 484: 7-11.

SHEARS, M. A., FLETCHER, G. L., HEW, C. L., GAUTHIER, S. and DAVIES, P. L.,

1991. Transfer, expression, and stable inheritance of antifreeze protein genes in

Atlantic salmon (Salmo salar). Mol. Mar. Biol. Biotech., 1: 58-63.

SHEELA, G. S., PANDIAN, T. J. and MATHAVAN, S., 1999 Electrophoretic transfer, stable

integration, expression and transmission of ZpBypGH and ZpBrtGH in Indian catfish

Heteropneustes fossillis. Aquacult. Res., 30: 1-16.

SHEELA, S. G., CHEN, J. D., MATHAVAN, S. and PANDIAN, T. J., 1998. Construction,

electroporetic transfer and expression of ZpbypGH ZpbrtGH in zebrafish. J. Biosci.,

23: 565-576.

SHI, J. and CAMUS, A. C., 2006. Hepcidins in amphibians and fishes: Antimicrobial

peptides or iron-regulatory hormones? Dev. Comp. Immunol., 30: 746-755.

SHIGEKAWA, K. and DOWER, W. J., 1988. Electroporation of eukaryotes and prokaryotes:

a general approach to the introduction of macromolecules into cells. Biotechniques,

6: 742-751.

SHIKE, H., LAUTH, X., WESTERMAN, M. E., OSTLAND, V. E., CARLBERG, J. M.,

VAN OLST, J. C., SHIMIZU, C., BULET, P. and BURNS, J. C., 2002. Bass

hepcidin is a novel antimicrobial peptide induced by bacterial challenge. Eur. J.

Biochem., 269: 2232-2237.

Page 36: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

SHIKE, H., SHIMIZU, C., LAUTH, X. and BURNS, J. C., 2004. Organization and

expression analysis of the zebrafish hepcidin gene, an antimicrobial peptide gene

conserved among vertebrates. Dev. Comp. Immunol., 28: 747-754.

SHIN, S. Y., KANG, J. H. and HAHM, K. S., 1999. Structure-antibacterial, antitumor and

hemolytic activity relationships of cecropin A-magainin 2 and cecropin A-melittin

hybrid peptides. J. Pept. Res., 53: 82-90.

SHIOMI, K., IGARASHI, T., YOKOTA, H., NAGASHIMA, Y. and ISHIDA, M., 2000.

Isolation and structures of grammistins, peptide toxins from the skin secretion of the

soapfish Grammistes sexlineatus. Toxicon, 38: 91-103.

SIMON, L., FREMAUX, C., CENATIEMPO, Y. and BERJEAUD, J. M., 2002. Sakacin G, a

new type of antilisterial bacteriocin. Appl. Environ. Microbiol., 68: 6416-6420.

SIN, F. Y. T., BARTLEY, A. L., WALKER, S. P., SIN, I. L., SYMONDS, J. E., HAWKE, L.

and HOPKINS, C. L., 1993. Gene transfer in chinook salmon (Oncorhynchus

tshawytscha) by electroporating sperm in the presence of pRSV-lacZ DNA.

Aquaculture, 117: 57-69.

SINZELLE, L., VALLIN, J., COEN, L., CHESNEAU, A., DU PASQUIER, D., POLLET, N.,

DEMENEIX, B. and MAZABRAUD, A., 2006. Generation of trangenic Xenopus

laevis using the sleeping beauty transposon system. Transgenic Res., 15: 751-760.

SKOSYREV, V. S., RUDENKO, N. V., YAKHNIN, A. V., ZAGRANICHNY, V. E.,

POPOVA, L. I., ZAKHAROV, M. V., GOROKHOVATSKY, A. Y. and

VINOKUROV, L. M., 2003. EGFP as a fusion partner for the expression and organic

extraction of small polypeptides. Protein Expr. Purif., 27: 55-62.

SMITH, K. and SPADAFORA, C., 2005. Sperm-mediated gene transfer: applications and

implications. Bioessays, 27: 551-562.

STEINER, H., ANDREU, D. and MERRIFIELD, R. B., 1988. Binding and action of cecropin

and cecropin analogues: antibacterial peptides from insects. Biochim. Biophys. Acta,

939: 260-266.

STEINER, H., HULTMARK, D., ENGSTRÖM, Å., BENNICH, H. and BOMAN, H. G.,

1981. Sequence and specificity of two antibacterial proteins involved in insect

immunity. Nature, 292: 246-248.

Page 37: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

STRUB, J. M., HUBERT, P., NULLANS, G., AUNIS, D. and METZ-BOUTIGUE, M. H.,

1996. Antibacterial activity of secretolytin, a chromogranin B-derived peptide (614-

626), is correlated with peptide structure. FEBS Lett., 379: 273-278.

STUART, G. W., McMURRAYM, J. V. and WESTERFIELD, M., 1988. Replication,

integration and stable germ-line transmission of foreign sequences injected into early

zebrafish embryos. Development, 103: 403-412.

STUART, G. W., VIELKIND, J. R., MCMURRAY, J. V. and WESTERFIELD, M., 1990.

Stable lines of transgenic zebrafish exhibit reproducible patterns of transgene

expression. Development, 109: 577-584.

SUBASINGHE, R. P., BARG, U., PHILLIPS, M. J., BARTLEY, D. and TACON, A., 1998.

Aquatic animal health management: investment opportunities within developing

countries. J. Appl. Ichthyol., 14: 123-129.

SUN, B. J., XIE, H. X., SONG, Y. and NIE, P., 2007. Gene structure of an antimicrobial

peptide from mandarin fish, Siniperca chuatsi (Basilewsky), suggests that

moronecidins and pleurocidins belong in one family: the piscidins. J. Fish Dis., 30:

335-343.

SUN, D., ECCLESTON, E. D. and FALLON, A. M., 1998. Peptide sequence of an antibiotic

cecropin from the vector mosquito, Aedes albopictus. Biochem. Biophys. Res.

Commun., 249: 410-415.

SUN, D., ECCLESTON, E. D. and FALLON, A. M., 1999. Cloning and expression of three

cecropin cDNAs from a mosquito cell line. FEBS Lett., 454: 147-151.

SZELEI, J. and DUDA, E., 1989. Entrapment of high-molecular-mass DNA molecules in

liposomes for the genetic transformation of animal cells. Biochem. J., 259: 549-553.

SZELEI, J., VÁRADI, L., MÜLLER, F., ERDÉLYI, F., ORBÁN, L., HORVÁTH, L. and

DUDA, E., 1994. Liposome-mediated gene transfer in fish embryos. Transgenic

Res., 3: 116-119.

Page 38: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

TAMAMURA, H., KURODA, M., MASUDA, M., OTAKA, A., FUNAKOSHI, S.,

NAKASHIMA, H., YAMAMOTO, N., WAKI, M., MATSUMOTO, A.,

LANCELIN, J. M., KOHDA, D., TATE, S., INAGAKI, F. and FUJII, N., 1993. A

comparative study of the solution structures of tachyplesin I and a novel anti-HIV

synthetic peptide, T22 ([Tyr5,12, Lys7]-polyphemusin II), determined by nuclear

magnetic resonance. Biochim. Biophys. Acta, 1163: 209-216.

TANG, Y-Q., YUAN, J., OSAPAY, G., OSAPAY, K., TRAN, D., MILLER, C. J.,

OUELLETTE, A. J. and SELSTED, M. E., 1999. A cyclic antimicrobial peptide

produced in primate leukocytes by the ligation of two truncated α-defensins. Science,

286: 498-502.

*TATUSOVA, T. A. and MADDEN, T. L., 1999. Blast 2 sequences-a new tool for

comparing protein and nucleotide sequences. FEMS Microbiol. Lett., 174: 247-250.

THERMES, V., GRABHER, C., RISTORATORE, F., BOURRAT, F., CHOULIKA, A.,

WITTBRODT, J. and JOLY, J. S., 2002. I-SceI meganuclease mediates highly

efficient transgenesis in fish. Mech. Dev., 118: 91-98.

THUNE, R. L., STANLEY, L. A. and COOPER, R. K., 1993. Pathogenesis of gram-negative

bacterial infections in warmwater fish. Annu. Rev. Fish Dis., 3: 37-68.

*TOSATTO, S. C. E., 2006. The VICTOR Package for 3D Protein Structure Modelling.

Availabe from: http://protein.bio.unipd.it/homer/.

TOSSI, A., 2008a. AMPs and HDPs. Retrieved March 02, 2008, from

http://www.bbcm.units.it/~antimic/researchAMPs.html.

TOSSI, A., 2008b. Alfa-helical peptides. Retrieved March 02, 2008, from

http://www.bbcm.univ.trieste.it/~antimic/researchAlfa-HelicalPeptides.html.

UDVADIA, A. J. and LINNEY, E., 2003. Windows into development: historic, current, and

future perspectives on transgenic zebrafish. Dev. Biol., 256: 1-17.

UZZELL, T., STOLZENBERG, E. D., SHINNAR, A. E. and ZASLOFF, M., 2003. Hagfish

intestinal antimicrobial peptides are ancient cathelicidins. Peptides, 24: 1655-1667.

VAN DER PUTTEN, H., BOTTERI, H., MILLER, F. M., ROSENFELD, A. D., FAN, M. G.,

EVANS, R. M. and VERMA, I., 1985. Efficient insertion of genes into the mouse

germ line via retroviral vectors. Proc. Natl Acad. Sci. USA, 82: 6148-6152.

Page 39: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

VAN HOFSTEN, P., FAYE, I., KOCKUM, K., LEE, J. Y., XANTHOPOULOS, K. G.,

BOMAN, I. A., BOMAN, H. G., ENGSTROM, A., ANDREU, D. and

MERRIFIELD, R. B., 1985. Molecular cloning, cDNA sequencing, and chemical

synthesis of cecropin B from Hyalophora cecropia. Proc. Natl. Acad. Sci. USA, 82:

2240-2243.

VENUGOPAL, T., PANDIAN, T. J., MATHAVAN, S. and, SARANGI, N., 1998. Gene

transfer in Indian major carps by electroporation. Curr. Sci., 74: 636-640.

VENUGOPAL, T., ANATHY, V., PANDIAN, T. J., GONG, G. Z. and MATHAVAN, S.,

2002. Molecular cloning of growth hormone-encoding cDNA of an Indian major

carp, Labeo rohita, and its expression in Escherichia coli and Zebrafish. Gen. Comp.

Endocrinol., 125: 236-247.

VENUGOPAL, T., ANATHY, V., KIRANKKUMAR, S. and PANDIAN, T. J., 2004.

Growth enhancement and food conversion efficiency of transgenic fish Labeo rohita.

J. Exp. Zool. A Comp. Exp. Biol., 301A: 477-490.

VIZIOLI, J. and SALZET, M., 2002. Antimicrobial peptides from animals: focus on

invertebrates. Trends Pharmacol Sci., 23: 494-496.

VIZIOLI, J., BULET, P., CHARLET, M., LOWENBERGER, C., BLASS, C., MÜLLER, H.

M., DIMOPOULOS, G., HOFFMANN, J., KAFATOS, F. C. and RICHMAN, A.,

2000. Cloning and analysis of a cecropin gene from the malaria vector mosquito,

Anopheles gambiae. Insect Mol. Biol., 9: 75-84.

WADE, D., ANDREU, D., MITCHELL, S. A., SILVEIRA, A. M., BOMAN, A., BOMAN,

H. G. and MERRIFIELD, R. B., 1992. Antibacterial peptides designed as analogs or

hybrids of cecropins and melittin. Int. J. Pept. Protein Res., 40: 429-436.

WADMAN, S. A., CLARK, K. J. and HACKETT, P. B., 2005. Fishing for answers with

transposons. Mar. Biotechnol., 7: 135-141.

WANG, R., ZHANG, P., GONG, Z. and HEW, C. L., 1995. Expression of the antifreeze

protein gene in transgenic goldfish (Carassius auratus) and its implication in cold

adaptation. Mol. Mar. Biol. Biotechnol., 4: 20-26.

WANG, W., SMITH, D. K., MOULDING, K. and CHEN, H. M., 1998. The dependence of

membrane permeability by the antibacterial peptide cecropin B and its analogs, CB-1

and CB-3, on liposomes of different composition. J. Biol. Chem., 273: 27438-27448.

Page 40: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

*WANG, Y., HU, W., WU, G., SUN, Y., CHEN, S., ZHANG, F., ZHU, Z., FENG, J. and

ZHANG, X., 2001. Genetic analysis of “all-fish” growth hormone gene transferred

carp (Cyprinus carpio L.) and its F1 generation. Chin. Sci. Bull., 46: 1174-1177.

WANG, L., LI, Z., DU, C., CHEN, W. and PANG, Y., 2007. Characterization and expression

of a cecropin-like gene from Helicoverpa armigera. Comp. Biochem. Physiol. B:

Biochem. Mol. Biol., 148: 417-425.

WEAVER, C. J., 1995. Electroporation theory: concepts and mechanisms. In: Animal Cell

Electroporation and Electrofusion Protocols. NICKOLOFF, J. A., (Eds.), Humana

Press, Totowa, New Jersey, pp. 3-28.

WEINBERG, E. S., 1998. Zebrafish genetics: harnessing horizontal gene transfer. Curr Biol.,

8: R244-R247.

WINKLER, C., HONG, Y., WITTBRODT, J. and SCHARTL, M., 1992. Analysis of

heterologous and homologous promoters and enhancers in vitro and in vivo by gene

transfer into Japanese medaka (Oryzias latipes) Xiphophorus. Mol. Mar. Biol.

Biotechnol., 1: 326-337.

WINN, R. N., VAN BENEDEN, R. J. and BURKHART, J. G., 1995. Transfer, methylation

and spontaneous mutation frequency of fX174am3cs70 sequences in medaka

(Oryzias latipes) and mummichog (Fundulus heteroclitus): Implications for gene

transfer and environmental mutagenesis in aquatic species. Mar. Environ. Res., 40:

247-265.

WU, G., SUN, Y. and ZHU, Z., 2003. Growth hormone gene transfer in common carp. Aquat.

Living Resour., 16: 416-420.

*WU, T., YANG, H., DONG, Z., XIA, D., SHI, Y., JI, X., SHEN, Y. and SUN, W., 1994.

The integration and expression of human growth gene in blunt snout bream and

common carp. J. Fish. China/Shuichan Xuebao, 18: 284-289.

*XIE, Y., LIU, D., ZOU, J., LI, G. and ZHU, Z., 1989. Novel gene transfer in the fertilized

eggs of loach via electroporation. Acta Hydrobiol. Sin., 13: 387-389.

XU, T., LEVITZ, S. M., DIAMOND, R. D. and OPPENHEIM, F. G., 1991. Anticandidal

activity of major human salivary histatins. Infect. Immun., 59: 2549-2554.

Page 41: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

XU, X., JIN, F., YU, X., JI, S., WANG, J., CHENG, H., WANG, C. and ZHANG, W., 2007.

Expression and purification of a recombinant antibacterial peptide, cecropin, from

Escherichia coli. Protein Expr. Purif., 53: 293-301.

YAMANO, Y., MATSUMOTO, M., INOUE, K., KAWABATA, T. and MORISHIMA, I.,

1994. Cloning of cDNAs for cecropins A and B, and expression of the genes in the

silkworm, Bombyx mori. Biosci. Biotechnol. Biochem., 58: 1476-1478.

YANG, M., WANG, K. J., CHEN, J. H., QU, H. D. and LI, S. J., 2007. Genomic organization

and tissue-specific expression analysis of hepcidin-like genes from black porgy

(Acanthopagrus schlegelii B). Fish Shellfish Immunol., 23:1060-1071.

YAZAWA, R., HIRONO, I. and AOKI, T., 2005a. Characterization of promoter activities of

four different Japanese flounder promoters in transgenic zebrafish. Mar. Biotechnol.,

7: 625-633.

YAZAWA, R., HIRONO, I., YAMAMOTO, E. and AOKI, T., 2005b. Development of a gene

transfer technique for Japanese flounder fertilized eggs by particle gun

bombardment. Fish. Sci., 71: 869-874.

YAZAWA, R., HIRONO, I. and AOKI, T., 2006. Transgenic zebrafish expressing chicken

lysozyme show resistance against bacterial diseases. Transgenic Res., 15: 385-391.

YEAMAN, M. R. and YOUNT, N. Y., 2003. Mechanisms of antimicrobial peptide action and

resistance. Pharmacol. Rev., 55: 27-55.

YENUGU, S., HAMIL, K. G., RADHAKRISHNAN, Y., FRENCH, F. S. and HALL, S. H.,

2004. The androgen-regulated epididymal sperm-binding protein, human β-defensin

118 (DEFB118) (formerly ESC42), is an antimicrobial β-defensin. Endocrinology,

145: 3165-3173.

YOE, S. M., KANG, C. S., HAN, S. S. and BANG, I. S., 2006. Characterization and cDNA

cloning of hinnavin II, a cecropin family antibacterial peptide from the cabbage

butterfly, Artogeia rapae. Comp. Biochem. Physiol. B: Biochem. Mol. Biol., 144:

199-205.

*YOSHIZAKI, G., OSHIRO, T. and TAKASHIMA, F., 1991. Introduction of carp α-globulin

gene into rainbow trout. Nippon Suisan Gakkaishi, 57: 819-824.

YOUNT, N. Y., BAYER, A. S., XIONG, Y. Q. and YEAMAN, M. R., 2006. Advances in

antimicrobial peptide immunobiology. Biopolymers, 84: 435-458.

Page 42: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

ZAFARULLAH, M., OLSSON, P. E. and GEDAMU, L., 1989. Endogenous and heavy-

metal-ion-induced metallothionein gene expression in salmonid tissues and cell lines.

Gene, 83: 85-93.

*ZAKHARCHENKO, N. S., RUKAVTSOVA, E. B., GUDKOV, A. T. and BURYANOV,

YA. I., 2005. Enhanced resistance to phytopathogenic bacteria in transgenic tobacco

plants with synthetic gene of antimicrobial peptide cecropin P1. Genetika, 41: 1445-

1452.

ZASLOFF, M., 1987. Magainins, a class of antimicrobial peptides from Xenopus skin:

isolation, characterization of two active forms, and partial cDNA sequence of a

precursor. Proc. Natl Acad. Sci. USA, 84: 5449-5453.

ZASLOFF, M., 2002. Antimicrobial peptides of multicellular organisms. Nature, 415: 389-

395.

ZELENIN, A. V., ALIMOV, A. A., BARMINTZEV, V. A., BENIUMOV, A. O.,

ZELENINA, I. A., KRASNOV, A. M. and KOLESNIKOV, V. A., 1991. The

delivery of foreign genes into fertilized fish eggs using high-velocity

microprojectiles. FEBS Lett., 287: 118-120.

*ZHANG, F., WANG, Y., HU, W., CUI, Z. and ZHU, Z., 2000. Physiological and

pathological analysis of the mice fed with “all-fish” gene transferred yellow river

carp. High Technol. Lett., 7: 17-19.

ZHANG, H., YUAN, Q., ZHU, Y. and MA, R., 2005. Expression and preparation of

recombinant hepcidin in Escherichia coli. Protein Expr. Purif., 41: 409-416.

ZHANG, P., HAYAT, M., JOYCE, C., GONZALEZ-VILLASENOR, L. I., LIN, C. M.,

DUNHAM, R. A., CHEN, T. T. and POWERS, D. A., 1990. Gene transfer,

expression and inheritance of pRSV-rainbow trout-GH cDNA in the common carp,

Cyprinus carpio (Linnaeus). Mol. Reprod. Dev., 25: 3-13.

*ZHANG, P., XU, Y., LIU, Z., XIANG, Y., DU, S. and HEW, C. L., 1998. Gene transfer in

red sea bream (Pagrosomus major). In: New Developments in Marine

Biotechnology. LE GAL, Y. and HALVORSON, H. O., (Eds.), Plenum Press, New

York, pp. 15-18.

ZHANG, P., ZHOU, J. and WANG, R., 1993. Gene transfer in goldfish, Carassius auratus,

by oocyte microinjection. Aquaculture, 111: 311.

Page 43: References - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/7014/10/10_references.p… · ANDRA, J., BERNINGHAUSEN, O. and LEIPPE, M., 2001. Cecropins, antibacterial peptides

ZHANG, Y. A., ZOU, J., CHANG, C. I. and SECOMBES, C. J., 2004. Discovery and

characterization of two types of liver-expressed antimicrobial peptide 2 (LEAP-2)

genes in rainbow trout. Vet. Immunol. Immunopathol., 101: 259-269.

ZHAO, X., ZHANG, P. J. and WONG, T. K., 1993. Application of Baekonization: A new

approach to produce transgenic fish. Mol. Mar. Biol. Biotechnol., 2: 63-69.

ZHONG, J., WANG, Y. and ZHU, Z., 2002. Introduction of the human lactoferrin gene into

grass carp (Ctenopharyngodon idellus) to increase resistance against GCH virus.

Aquaculture, 214: 93-101.

ZHOU, X., NGUYEN, T. and KIMBRELL, D. A., 1997. Identification and characterization

of the cecropin antibacterial protein gene locus in Drosophila virilis. J. Mol. Evol.,

44: 272-281.

ZHU, Z., LI, G., HE, L. and CHEN, S., 1985. Novel gene transfer into the fertilized eggs of

gold fish (Carassius auratus L. 1758). J. Appl. Ichthyol., 1: 31-34.

*ZHU, Z., XU, K., LI, G., XIE, Y. and HE, L., 1986. Biological effects of human growth

hormone gene microinjected into the fertilized eggs of loach Misgurnus

anguillicaudatus (Cantor). Kexue Tongbao Academia Sinica, 31: 988-990.

* Not referred to in original.