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利用日本黑牛全基因组重测序检测BTA7上眼肌面积脂肪面积比QTL周围的候选多态性。

Detection of candidate polymorphisms around the QTL for fat area ratio to rib eye area on BTA7 using whole-genome resequencing in Japanese Black cattle.

作者信息

Sasazaki Shinji, Kawaguchi Fuki, Nakajima Ayaka, Yamamoto Raito, Akiyama Takayuki, Kohama Namiko, Yoshida Emi, Kobayashi Eiji, Honda Takeshi, Oyama Kenji, Mannen Hideyuki

机构信息

Laboratory of Animal Breeding and Genetics, Graduate School of Agricultural Science, Kobe University, Kobe, Japan.

Hyogo Prefectural Technology Center for Agriculture, Hokubu Agricultural Technology Institute, Asago, Japan.

出版信息

Anim Sci J. 2020 Jan-Dec;91(1):e13335. doi: 10.1111/asj.13335.

Abstract

In our previous study, we performed genome-wide association study (GWAS) to identify the genomic region associated with Fat area ratio to rib eye area (FAR) and detected a candidate in BTA7 at 10-30 Mbp. The present study aims to comprehensively detect all polymorphisms in the candidate region using whole-genome resequencing data. Based on whole-genome resequencing of eight animals, we detected 127,090 polymorphisms within the region. Of these, 31,945 were located within the genes. We further narrowed the polymorphisms to 6,044 with more than five allele differences between the high and low FAR groups that were located within 179 genes. We subsequently investigated the functions of these genes and selected 170 polymorphisms in eight genes as possible candidate polymorphisms. We focused on SLC27A6 K81M as a putative candidate polymorphism. We genotyped the SNP in a Japanese Black population (n = 904) to investigate the effect on FAR. Analysis of variance revealed that SLC27A6 K81M had a lower p-value (p = .0009) than the most significant SNP in GWAS (p = .0049). Although only SLC27A6 K81M was verified in the present study, subsequent verification of the remaining candidate genes and polymorphisms could lead to the identification of genes and polymorphisms responsible for FAR.

摘要

在我们之前的研究中,我们进行了全基因组关联研究(GWAS),以确定与脂肪面积与肋眼面积比(FAR)相关的基因组区域,并在BTA7染色体10 - 30兆碱基处检测到一个候选区域。本研究旨在利用全基因组重测序数据全面检测候选区域内的所有多态性。基于对8只动物的全基因组重测序,我们在该区域内检测到127,090个多态性。其中,31,945个位于基因内部。我们进一步将多态性范围缩小至6,044个,这些多态性在高FAR组和低FAR组之间存在5个以上等位基因差异,且位于179个基因内。随后,我们研究了这些基因的功能,并选择了8个基因中的170个多态性作为可能的候选多态性。我们重点关注SLC27A6基因的K81M位点作为一个假定的候选多态性。我们在一个日本黑牛群体(n = 904)中对该单核苷酸多态性进行基因分型,以研究其对FAR的影响。方差分析显示,SLC27A6基因的K81M位点的p值(p = 0.0009)低于GWAS中最显著的单核苷酸多态性的p值(p = 0.0049)。尽管在本研究中仅验证了SLC27A6基因的K81M位点,但后续对其余候选基因和多态性的验证可能会导致鉴定出与FAR相关的基因和多态性。

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