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The relation of GH1, GHR and DGAT1 polymorphisms with estimated breeding values for milk production traits of German Holstein sires

Author

Listed:
  • E. Hradecká

    (Agricultural Faculty, South Bohemian University in České Budějovice, Czech Republic)

  • J. Čítek

    (Agricultural Faculty, South Bohemian University in České Budějovice, Czech Republic)

  • L. Panicke

    (FBN Dummerstorf, Germany)

  • V. Řehout

    (Agricultural Faculty, South Bohemian University in České Budějovice, Czech Republic)

  • L. Hanusová

    (Agricultural Faculty, South Bohemian University in České Budějovice, Czech Republic)

Abstract

: We analysed the relations of estimated breeding values (EBV) of 315 German Holstein sires to their genotypes in growth hormone gene (GH1), growth hormone receptor gene (GHR) and acylCoA-diacylglycerol acyltransferase 1 (DGAT1). The strong relation of DGAT1 K232A to the estimated breeding values for milk production traits has been confirmed, when allele DGAT1K was connected with higher milk fat yield, milk fat and milk protein content, while allele DGAT1A increased milk yield and milk protein yield. The effect of DGAT1 genotype explained from 4.70% of variability of EBVs for fat yield to 31.90% of variability of EBVs for fat content. The evaluation of GH1 127 Leu/Val and GHR 257 SNP polymorphisms did not reveal an association of their polymorphism with EBVs for milk production traits, except the EBVs of GHRG/GHRG homozygotes for fat yield, which were significantly lower. The effect of GH1 or GHR genotype explained only a negligible portion of variability of EBVs (R2 < 1.00% in most cases).

Suggested Citation

  • E. Hradecká & J. Čítek & L. Panicke & V. Řehout & L. Hanusová, 2008. "The relation of GH1, GHR and DGAT1 polymorphisms with estimated breeding values for milk production traits of German Holstein sires," Czech Journal of Animal Science, Czech Academy of Agricultural Sciences, vol. 53(6), pages 238-246.
  • Handle: RePEc:caa:jnlcjs:v:53:y:2008:i:6:id:362-cjas
    DOI: 10.17221/362-CJAS
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    References listed on IDEAS

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    1. A. Matějíček & J. Matějíčková & E. Němcová & O.M. Jandurová & M. Štípková & J. Bouška & J. Frelich, 2007. "Joint effects of CSN3 and LGB genotypes and their relation to breeding values of milk production parameters in Czech Fleckvieh," Czech Journal of Animal Science, Czech Academy of Agricultural Sciences, vol. 52(4), pages 83-87.
    2. U. Czarnik & M. Galiński & Ch.S. Pareek & T. Zabolewicz & Z. Wielgosz-Groth, 2007. "Study of an association between SNP 775C>T within the bovine ITBG2 gene and milk performance traits in Black and White cows," Czech Journal of Animal Science, Czech Academy of Agricultural Sciences, vol. 52(1), pages 1-6.
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    Citations

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    Cited by:

    1. M. Szewczuk & M. Bajurna & S. Zych & W. Kruszyński, 2013. "Association of insulin-like growth factor I gene polymorphisms (IGF1/TasI and IGF1/SnaBI) with the growth and subsequent milk yield of Polish Holstein-Friesian heifers," Czech Journal of Animal Science, Czech Academy of Agricultural Sciences, vol. 58(9), pages 404-411.
    2. L. Hanusová & A. Míková & L. Večerek & D. Schroeffelová & V. Řehout & L. Tothová & K. Vernerová & B. Hosnedlová & J. Čítek, 2014. "Effect of DGAT1 polymorphisms on the estimated breeding values of Czech Simmental sires," Czech Journal of Animal Science, Czech Academy of Agricultural Sciences, vol. 59(8), pages 365-373.
    3. H. Kulig & I. Kowalewska-Łuczak & M. Kmieć & K. Wojdak-Maksymiec, 2010. "ANXA9, SLC27A3, FABP3 and FABP4 single nucleotide polymorphisms in relation to milk production traitsin Jersey cows," Czech Journal of Animal Science, Czech Academy of Agricultural Sciences, vol. 55(11), pages 463-467.
    4. I. Manga & J. Dvořák, 2010. "TaqMan allelic discrimination assay for A1 and A2 alleles of the bovine CSN2 gene," Czech Journal of Animal Science, Czech Academy of Agricultural Sciences, vol. 55(8), pages 307-312.
    5. I. Kowalewska-Łuczak & H. Kulig & M. Kmieć, 2010. "Associations between the bovine PPARGC1A gene and milk production traits," Czech Journal of Animal Science, Czech Academy of Agricultural Sciences, vol. 55(5), pages 195-199.
    6. A. Abdolmohammadi & H. Atashi & P. Zamani & C. Bottema, 2011. "High resolution melting as an alternative method to genotype diacylglycerol O-acyltransferase 1 (DGAT1) K232A polymorphism in cattle," Czech Journal of Animal Science, Czech Academy of Agricultural Sciences, vol. 56(8), pages 370-376.

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    Keywords

    bovine; GH1; GHR; DGAT1; milk production; breeding value; Holstein;
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