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416 related items for PubMed ID: 27468856

  • 1. Genetic effects of FASN, PPARGC1A, ABCG2 and IGF1 revealing the association with milk fatty acids in a Chinese Holstein cattle population based on a post genome-wide association study.
    Li C, Sun D, Zhang S, Yang S, Alim MA, Zhang Q, Li Y, Liu L.
    BMC Genet; 2016 Jul 28; 17():110. PubMed ID: 27468856
    [Abstract] [Full Text] [Related]

  • 2. A post-GWAS confirming the SCD gene associated with milk medium- and long-chain unsaturated fatty acids in Chinese Holstein population.
    Li C, Sun D, Zhang S, Liu L, Alim MA, Zhang Q.
    Anim Genet; 2016 Aug 28; 47(4):483-90. PubMed ID: 26970560
    [Abstract] [Full Text] [Related]

  • 3. Effect of FASN gene on milk yield and milk composition in the Chinese Holstein dairy population.
    Alim MA, Wang P, Wu XP, Li C, Cui XG, Zhang SL, Zhang Q, Zhang Y, Sun DX.
    Anim Genet; 2014 Feb 28; 45(1):111-3. PubMed ID: 24015912
    [Abstract] [Full Text] [Related]

  • 4. Effect of polymorphisms in the FASN, OLR1, PPARGC1A, PRL and STAT5A genes on bovine milk-fat composition.
    Schennink A, Bovenhuis H, Léon-Kloosterziel KM, van Arendonk JA, Visker MH.
    Anim Genet; 2009 Dec 28; 40(6):909-16. PubMed ID: 19719788
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  • 5. Genome wide association study identifies 20 novel promising genes associated with milk fatty acid traits in Chinese Holstein.
    Li C, Sun D, Zhang S, Wang S, Wu X, Zhang Q, Liu L, Li Y, Qiao L.
    PLoS One; 2014 Dec 28; 9(5):e96186. PubMed ID: 24858810
    [Abstract] [Full Text] [Related]

  • 6. A post-GWAS confirming effects of PRKG1 gene on milk fatty acids in a Chinese Holstein dairy population.
    Shi L, Lv X, Liu L, Yang Y, Ma Z, Han B, Sun D.
    BMC Genet; 2019 Jul 03; 20(1):53. PubMed ID: 31269900
    [Abstract] [Full Text] [Related]

  • 7. Genome-wide association of milk fatty acids in Dutch dairy cattle.
    Bouwman AC, Bovenhuis H, Visker MH, van Arendonk JA.
    BMC Genet; 2011 May 11; 12():43. PubMed ID: 21569316
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  • 8. Genome wide association study and genomic prediction for fatty acid composition in Chinese Simmental beef cattle using high density SNP array.
    Zhu B, Niu H, Zhang W, Wang Z, Liang Y, Guan L, Guo P, Chen Y, Zhang L, Guo Y, Ni H, Gao X, Gao H, Xu L, Li J.
    BMC Genomics; 2017 Jun 14; 18(1):464. PubMed ID: 28615065
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  • 9. Identification of genetic associations of ECHS1 gene with milk fatty acid traits in dairy cattle.
    Shi L, Liu L, Ma Z, Lv X, Li C, Xu L, Han B, Li Y, Zhao F, Yang Y, Sun D.
    Anim Genet; 2019 Oct 14; 50(5):430-438. PubMed ID: 31392738
    [Abstract] [Full Text] [Related]

  • 10. Joint genome-wide association study for milk fatty acid traits in Chinese and Danish Holstein populations.
    Li X, Buitenhuis AJ, Lund MS, Li C, Sun D, Zhang Q, Poulsen NA, Su G.
    J Dairy Sci; 2015 Nov 14; 98(11):8152-63. PubMed ID: 26364108
    [Abstract] [Full Text] [Related]

  • 11. Genetic variants of fatty acid elongase 6 in Chinese Holstein cow.
    Chen S, Chai M, Tian C, Li Y, Deng T, Wu H, Liu X.
    Gene; 2018 Sep 05; 670():123-129. PubMed ID: 29787827
    [Abstract] [Full Text] [Related]

  • 12. Identification of genetic effects and potential causal polymorphisms of CPM gene impacting milk fatty acid traits in Chinese Holstein.
    Shi L, Liu L, Lv X, Ma Z, Li C, Li Y, Zhao F, Sun D, Han B.
    Anim Genet; 2020 Aug 05; 51(4):491-501. PubMed ID: 32301146
    [Abstract] [Full Text] [Related]

  • 13. Polymorphisms in genes in the SREBP1 signalling pathway and SCD are associated with milk fatty acid composition in Holstein cattle.
    Rincon G, Islas-Trejo A, Castillo AR, Bauman DE, German BJ, Medrano JF.
    J Dairy Res; 2012 Feb 05; 79(1):66-75. PubMed ID: 22114848
    [Abstract] [Full Text] [Related]

  • 14. The g.841G>C SNP of FASN gene is associated with fatty acid composition in beef cattle.
    Hayakawa K, Sakamoto T, Ishii A, Yamaji K, Uemoto Y, Sasago N, Kobayashi E, Kobayashi N, Matsuhashi T, Maruyama S, Matsumoto H, Oyama K, Mannen H, Sasazaki S.
    Anim Sci J; 2015 Aug 05; 86(8):737-46. PubMed ID: 25597874
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  • 15. Fatty acid synthase effects on bovine adipose fat and milk fat.
    Morris CA, Cullen NG, Glass BC, Hyndman DL, Manley TR, Hickey SM, McEwan JC, Pitchford WS, Bottema CD, Lee MA.
    Mamm Genome; 2007 Jan 05; 18(1):64-74. PubMed ID: 17242864
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  • 16. Fine-mapping of BTA17 using imputed sequences for associations with de novo synthesized fatty acids in bovine milk.
    Duchemin SI, Bovenhuis H, Megens HJ, Van Arendonk JAM, Visker MHPW.
    J Dairy Sci; 2017 Nov 05; 100(11):9125-9135. PubMed ID: 28865853
    [Abstract] [Full Text] [Related]

  • 17. Determination of genetic effects and functional SNPs of bovine HTR1B gene on milk fatty acid traits.
    Cao M, Shi L, Peng P, Han B, Liu L, Lv X, Ma Z, Zhang S, Sun D.
    BMC Genomics; 2021 Jul 27; 22(1):575. PubMed ID: 34315401
    [Abstract] [Full Text] [Related]

  • 18. The bovine PPARGC1A gene: molecular characterization and association of an SNP with variation of milk fat synthesis.
    Weikard R, Kühn C, Goldammer T, Freyer G, Schwerin M.
    Physiol Genomics; 2005 Mar 21; 21(1):1-13. PubMed ID: 15781588
    [Abstract] [Full Text] [Related]

  • 19. Association of polymorphisms in solute carrier family 27, isoform A6 (SLC27A6) and fatty acid-binding protein-3 and fatty acid-binding protein-4 (FABP3 and FABP4) with fatty acid composition of bovine milk.
    Nafikov RA, Schoonmaker JP, Korn KT, Noack K, Garrick DJ, Koehler KJ, Minick-Bormann J, Reecy JM, Spurlock DE, Beitz DC.
    J Dairy Sci; 2013 Sep 21; 96(9):6007-21. PubMed ID: 23831098
    [Abstract] [Full Text] [Related]

  • 20. Association of polymorphisms in the bovine FASN gene with milk-fat content.
    Roy R, Ordovas L, Zaragoza P, Romero A, Moreno C, Altarriba J, Rodellar C.
    Anim Genet; 2006 Jun 21; 37(3):215-8. PubMed ID: 16734679
    [Abstract] [Full Text] [Related]


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