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2013 | 31 | 4 |

Tytuł artykułu

SLC27A1 SNPs in relation to breeding value of milk production traits in Polish Holstein-Friesian cows

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The aim of the study was to investigate associations between SLC27A1 genotypes and estimated breeding value of milk production traits (milk, fat and protein yield, kg; fat and protein content, %) in the Polish Holstein-Friesian cows’ herd. Three single nucleotide polymorphisms were genotyped,the g.14996C>G. in the exon 3, g.14791C>T in exon 4 and g.14589A>G in exon 5 of SLC27A1 gene.The genotype and allele frequencies for each polymorphism and the SLC27A1 haplotype frequencies were estimated in the examined herd. Significant relations between the SLC27A1 g.14791C>T SNP and breeding value for protein content were found. The results indicate that selection for the SLC27A1-CC individuals might contribute to increased protein content of milk in Polish Holstein-Friesian cows. Further studies are needed to confirm these results.

Wydawca

-

Rocznik

Tom

31

Numer

4

Opis fizyczny

p.273-279,ref.

Twórcy

autor
  • Department of Genetics and Animal Breeding, West Pomeranian University of Technology in Szczecin, Doktora Judyma 6, 71-466 Szczecin, Poland
  • Department of Genetics and Animal Breeding, West Pomeranian University of Technology in Szczecin, Doktora Judyma 6, 71-466 Szczecin, Poland
autor
  • Department of Animal Genetics and Animal Breeding, National Research Institute of Animal Production, Krakowska 1, 32-083 Balice/Krakow, Poland
autor
  • Department of Genetics and Animal Breeding, West Pomeranian University of Technology in Szczecin, Doktora Judyma 6, 71-466 Szczecin, Poland
  • Department of Genetics, Wrocław University of Environmental and Life Sciences, Kozuchowska 7, 51-631 Wroclaw, Poland

Bibliografia

  • GERTOW K., SKOGLUND-ANDERSSON C., ERIKSSON P., BOQUIST S., ORTH-GOMER K.,SCHENCK-GUSTAFSSON K., HAMSTEN A., FISHER R.M., 2003 – A common polymorphism in the fatty acid transport protein-1 gene associated with elevated post-prandial lipaemia and alterations in LDL particle size distribution. Atherosclerosis 167, 265-273.
  • HALL A.M., SMITH A.J., BERNLOHR D.A., 2003 – Purified Murine Fatty Acid Transport Protein 1. Journal of Biological Chemistry 278, 43008-43013.
  • KOMISAREK J., MICHALAK A., WALENDOWSKA A., 2011 – The effects of polymorphisms in DGAT1, GH and GHR genes on reproduction and production traits in Jersey cows. Animal Science Papers and Reports 29, 29-36.
  • LV Y., WEI C., ZHAN L., LU G., LIU K., DU L., 2011 – Association between polymorphisms in the SLC27A1 gene and milk production traits in Chinese Holstein cattle. Animal Biotechnology 22,1-6.
  • MAO Y.J., CHEN R.J., CHANG L.L., CHEN Y., JI D.J., WU X.X., SHI X.K., WU H.T., ZHANG M.R., YANG Z.P., KONIG S., YANG L.G., 2012 – Effects of SCD1- and DGAT1-genes on production traits of Chinese Holstein cows located in the Delta Region of Yangtze River. Livestock Science 145,280-286.
  • MARTIN G., NEMOTO M., GELMAN L., GEFFROY S., NAJIB J., FRUCHART J.C., ROEVENS P., DE MARTINVILLE B., DEEB S., AUWERX J., 2000 – The Human Fatty Acid Transport Protein-1 (SLC27A1; FATP-1) cDNA and Gene: Organization, Chromosomal Localization, and Expression. Genomics 66, 296-304.
  • MATSUMOTO H., INADA S., KOBAYASHI E., ABE T., HASEBE H., SASAZAKI S., OYAMA K., MANNEN H., 2012 – Identification of SNPs in the FASN gene and their effect on fatty acid milk composition in Holstein cattle. Livestock Science 144, 281-284.
  • MEIRHAEGHE A., MARTIN G., NEMOTO M., DEEB S., COTTEL D., AUWERX J., AMOUYEL P., HELBECQUE N., 2000 – Intronic polymorphism in the fatty acid transport protein 1 gene is associated with increased plasma triglyceride levels in a French population. Arteriosclerosis,Thrombosis, and Vascular Biology 20, 1330-1334.
  • MOSIG M.O., LIPKIN E., KHUTORESKAYA G., TCHOURZYNA E., SOLLER M., FRIEDMANN A., 2003 – A whole genome scan for QTL affecting milk protein percentage in Israeli-Holstein cattle by means of selective milk DNA pooling in a daughter design, using an adjusted false discovery rate criterion. Genetics 157, 1683-1698.
  • OGOREVC J., KUNEJ T., RAZPET A., DOVC P., 2009 – Database of cattle candidate genes and genetic markers for milk production and mastitis. Animal Genetics 40, 832-851.
  • ORDOVÁS L., ROY R., ZARAGOZA P., HAYES H., EGGEN A., RODELLAR C., 2005 –Assignment of the solute carrier family 27 member 1 (SLC27A1) gene to bovine chromosome 7.Animal Genetics 36, 352-363.
  • ORDOVÁS L., ROY R., ZARAGOZA P., RODELLAR C., 2006 – Structural and functional characterization of the bovine solute carrier family 27 member 1 (SLC27A1) gene. Cytogenetic and Genome Research 115, 115-122.
  • ORDOVÁS L., ZARAGOZA P., ALTARRIBA J., RODELLAR C., 2008 – Identification of 14 new single nucleotide polymorphisms in the bovine SLC27A1 gene and evaluation of their association with milk fat content. Journal of Dairy Research 75, 129-134.
  • WANG Y., ZHU Q., ZHAO X.-L., YAO Y.G., LIU Y.P., 2010 – Association of FATP1 gene polymorphisms with chicken carcass traits in Chinese meat-type quality chicken populations.Molecular Biology Reports 37, 3683-3690.
  • WICZER B.M., BERNLOHR D.A., 2009 – A novel role for fatty acid transport protein 1 in the regulation of tricarboxylic acid cycle and mitochondrial function in 3T3-L1 adipocytes, Journal of Lipid Research 50, 2502-2513.
  • WOOLFE A., MULLIKIN J.C., ELNITSKI L., 2010 – Genomic features defining exonic variants that modulate splicing. Genome Biology 11, R20, doi:10.1186/gb-2010-11-2-r20, http://genomebiology.com.
  • WU Q., ORTEGON A.M., TSANG B., DOEGE H., FEINGOLD K.R., STAHL A., 2006 – FATP1 Is an Insulin-Sensitive Fatty Acid Transporter Involved in Diet-Induced Obesity. Molecular and Cellular Biology 26, 3455-3467.
  • ZHANG S., KNIGHT T.J., REECY J.M., WHEELER T.L., SHACKELFORD S.D., CUNDIFF L.V., BEITZ D.C., 2009 – Associations of polymorphisms in the promoter I of bovine acetyl-CoA carboxylase-alpha gene with beef fatty acid composition. Animal Genetics 41, 417-20.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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