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Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence, and write it down to keep as your “map”) TREP, identify the repetitive elements and their location in the sequence. (BLAST WHOLE Sequence. Remember to select the complete set and unselect the filter.) Blast2sequences between the two halves of the sequence, to more precisely identify the borders of the repeats (LTRs).

Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

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Page 1: Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

Annotating Retroelements

• Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence, and write it down to keep as your “map”)

• TREP, identify the repetitive elements and their location in the sequence. (BLAST WHOLE Sequence. Remember to select the complete set and unselect the filter.)

• Blast2sequences between the two halves of the sequence, to more precisely identify the borders of the repeats (LTRs).

Page 2: Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

LTR Retroelement

LTR

SHORT INVERTED REPEATS FLANK LTRHOST REPEATS

Page 3: Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

LTR Retroelement

Page 4: Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

TIRs

GAGTAAAATGCAAGAAACCCACTTTGAAGGCTAGGTTTGCAGATAACACTACGTTACATTTTTTGGACAGAAAGCACCACGTCTCGTGTAATCTTGTTGCAAATAACACTGATTGGCGGATTAGAGCGCTTAAAGTATGTTTATGACAGGAGGGTCCAGATTTTGCCCTTGTGGCGTAACGGCTTGGCCATGACGGCGT------>

<------ACGCCGTTTCGCCCCAAGCCGTTATGTCACATGGGCAAAATCTGGAACCACCTGTCATAAACACACTTAAAGCACTCTAATCCGCCAATCAGTGTTATTTGCAATAAGATTACACAAAACGTGATGCTTTTTGTTCAAAAAATGTAACGTAGTGTTATCTGCAAACCTAGCCTTCAAAATGGTGGTTTTATGCAATTTACTC

Reverse complement

Page 5: Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

SOLO LTRs

LTR

SHORT INVERTED REPEATS FLANK LTRHOST REPEATS

Page 6: Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

Example Retroelement Annotation

Page 7: Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

FINAL RESULT

Gypsy, WHAM

TIR, Mutator, Annie

SOLO LTR, Copia, WIS

Page 8: Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

Annotating Complete Sequences

• Dotter• TREP, Blast2sequences

• BLASTX – sequence that does not include repetitive elements. Identify possible proteins in your sequence.

• BLASTn – est_others, support predicted proteins with real ESTs

• FGENESH+ – polish your gene borders and structure• BLASTp – validate your predicted protein with related

one from BLASTx

Page 9: Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

Complete Annotation – Identify Retros

Page 10: Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

Complete Annotation – Identify Genes

Page 11: Annotating Retroelements Dotter, identify direct and inverted repeats, and graphically visualize them. (Rough idea of coordinates – highlight in your sequence,

FINAL RESULT