4.6 Article

Expression profile of FASN gene and association of its polymorphisms with intramuscular fat content in Hu sheep

Journal

ANIMAL BIOTECHNOLOGY
Volume -, Issue -, Pages -

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/10495398.2022.2149551

Keywords

FASN; expression; polymorphism; intramuscular fat; Hu sheep

Funding

  1. National Natural Science Foundation of China [32072713, 31872319]
  2. earmarked fund for China Agriculture Research System [CARS-38]
  3. Gansu Key RD Project [20YF8NH158, 21YF5NH213]

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This study investigated the expression profile of FASN in mRNA and protein levels and the relationship between SNPs within FASN and IMF content. The results showed significant differences in FASN expression among different tissues and identified two SNPs that were significantly associated with IMF content.
The content of intramuscular fat (IMF) is one of the most important factors that has a large impact on meat quality, and it is an effective way to improve IMF according to marker-assisted selection (MAS). Fatty-acid synthase (FASN) is a key gene in meat lipid deposition and fatty acid composition. Thus, this study was conducted to investigate the expression profile of FASN in mRNA and protein levels using real-time quantitative PCR (RT-qPCR) and western-blot methods. In addition, single nucleotide polymorphisms (SNPs) within FASN in 921 Hu rams with IMF content records were investigated using DNA-pooling sequencing and improved multiple ligase detection reaction (iMLDR) methods. Consequently, the highest mRNA expression level of FASN was observed in the perinephric fat, and the lowest in the liver among the 11 tissues analyzed, while no significant difference was found in mRNA and protein expression levels in longissimus dorsi among individuals with different IMF contents. A total of 10 putative SNPs were identified within FASN, and 9 of them can be genotyped by iMLDR method. Notably, two SNPs were significantly associated with IMF content, including NC_040262.1: g.5157 A > G in intron 5 (p = 0.046) and NC_040262.1: g.9413 T > C in intron 16 (p = 0.041), which supply molecular markers for improving meat quality in sheep breeding.

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