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Genetic solution to the problem of boar taint for production of entire males P.K. Mathur a ,*, H.A. Mulder b , J. Ten Napel b , J. J. Windig b , R.E. Crump b , B. van der Fels b , L. Heres c , S. Bloemhof a , M. S. Lopes a , E. F. Knol a a IPG, Institute for Pig Genetics B.V., The Netherlands b Animal Breeding and Genomics Centre, Wageningen UR c VION Food Group, The Netherlands

Genetic solution to the problem of boar taint for production of entire males

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Genetic solution to the problem of boar taint for production of entire males P.K. Mathur a ,*, H.A. Mulder b , J. Ten Napel b , J. J. Windig b , R.E. Crump b , B. van der Fels b , L. Heres c , S. Bloemhof a , M. S. Lopes a , E. F. Knol a a IPG, Institute for Pig Genetics B.V., The Netherlands - PowerPoint PPT Presentation

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Page 1: Genetic solution to the problem of boar taint for production of entire males

Genetic solution to the problem of boar taint for production of entire malesP.K. Mathura,*, H.A. Mulderb , J. Ten Napelb, J. J. Windigb, R.E. Crumpb, B. van der Felsb , L. Heresc, S. Bloemhofa,M. S. Lopesa, E. F. Knola

a IPG, Institute for Pig Genetics B.V., The Netherlandsb Animal Breeding and Genomics Centre, Wageningen URc VION Food Group, The Netherlands

Page 2: Genetic solution to the problem of boar taint for production of entire males

Genetic solution to the problem of boar taint

• Detection methods– Human Nose Scores (HNS)– Androstenone and skatole

• Genetic parameters– Production– Reproduction

• Genomic analysis

• Breeding strategy

Page 3: Genetic solution to the problem of boar taint for production of entire males

Boar taint

Consumers recognise boar taint by SMELL

When pork is heated

Page 4: Genetic solution to the problem of boar taint for production of entire males

So do the slaughter plants ..

Schnippe, Schweinzuch und Schweinemast, SUS, 4:2011

Page 5: Genetic solution to the problem of boar taint for production of entire males

We did so in the “lab”

21,972 samples

Strong boar taint

Boar taint

Weak boar taint

Deviant but not boar taint

Normal pork odour

3

21

0

4

Human Nose Scores (HNS)

Source: Mathur et al. (2011) submitted to Meat Science journal

Page 6: Genetic solution to the problem of boar taint for production of entire males

•Androstenone Androstenone (pheromone)(pheromone)

•Produced in testesProduced in testes

•Related “urine” odourRelated “urine” odour

•Androstenone Androstenone (pheromone)(pheromone)

•Produced in testesProduced in testes

•Related “urine” odourRelated “urine” odour

But the science believes in boar taint compounds

•Skatole (3-methyle-Skatole (3-methyle-indole)indole)

•Produced in hind Produced in hind gutgut

•Related “Fecal” Related “Fecal” odourodour

•Skatole (3-methyle-Skatole (3-methyle-indole)indole)

•Produced in hind Produced in hind gutgut

•Related “Fecal” Related “Fecal” odourodour

Accumulated in fatAccumulated in fat

Page 7: Genetic solution to the problem of boar taint for production of entire males

Genetic parameters

TraitAnd (ln)

Ska (ln)

P (high Ska)

HNS

Androstenone (ln) .54 .33 .31 .27

Skatole (ln) .37 .41 .84 .36

P (High Skatole) .33 .96 .40 .35

Human Nose Score (HNS)

.65 .90 .93 .12

Heritabilities (diagonal), Genetic correlation (below diagonal), Phenotypic correlations (above diagonal). Significant estimates in bold

Source: Windig et al. (2011) submitted to Journal of Animal Science

More than 7,000 boars

Page 8: Genetic solution to the problem of boar taint for production of entire males

Production traits

And (ln)

Ska (ln)

P (high Ska)

HNS

Daily Gain -.06 -.10 -.15 -.07

Fat depth .17 .12 .13 .29

Loin depth -.13 -.10 -.13 -.11

Genetic correlations

Source: Windig et al. (2011) submitted to Journal of Animal Science

N= 7,336 : Androstenone and Skatole N= 20,130 : Human Nose Scores

Page 9: Genetic solution to the problem of boar taint for production of entire males

Reproduction traits

And (ln)

Ska (ln)

P (high Ska)

HNS

Age at first insem. (d) -.10 -.13 -.19 -.10

Gestation length (d) .06 .06 .05 .11

Weaning to inse. Int. (d) -.09 .11 -.06 -.11

Total number born (N) -.07 .06 -.04 .08

Still born ln(N+1) -.07 .04 -.13 .02

Mortality (%) .12 .02 .05 -.09

Genetic correlations

Significant estimates in bold

Page 10: Genetic solution to the problem of boar taint for production of entire males

Genomic information

Reduction in boar taint due to a single SNP with large effect

Source: Duijvesteijn et al. BMC Genetics (2010)

Page 11: Genetic solution to the problem of boar taint for production of entire males

We used a panel of SNPs

Each AI boar genotyped with a panel of boar taint related SNPs selected out of 60K SNPs

Page 12: Genetic solution to the problem of boar taint for production of entire males

Genomic selection

Genomic Breeding Values (GBVs)

Genomic Breeding Values (GBVs)

Phenotypic data

HNS,

And, Ska

Genotypes based on selected SNP panel

Page 13: Genetic solution to the problem of boar taint for production of entire males

Breeding goal

Reduce “True” Boar taint

• Assumed to follow normal distribution

• Values on underlying scale based on area under the curve

Page 14: Genetic solution to the problem of boar taint for production of entire males

Sorting of LBT boars

TOPIGS

LBT-boar

a)

b)

c)

Genomics

Human nose scores

ASI compounds (carcass and biopsy)

LBT = Low Boar Taint

Page 15: Genetic solution to the problem of boar taint for production of entire males

Effect of genetic selection

Strong boar taint

Boar taint

Weak boar taint

Deviant but not boar taint

Normal pork odour

3

21

0

4

Human Nose Scores

- 41%

- 40%

- 19%

- 8%

+ 5%

Effect of LBT boars (%)

Page 16: Genetic solution to the problem of boar taint for production of entire males

Conclusion

Boar taint can be reduced Boar taint can be reduced through geneticsthrough genetics

through a combination of:

A) Boar taint compounds (And, Ska)B) Human nose scoresC) Genomic information

Page 17: Genetic solution to the problem of boar taint for production of entire males

Thanks !Thanks !