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荷斯坦犊牛不同生长阶段中MOGAT1和MOGAT3基因与生长性状关联的评估

Assessment of the association of the MOGAT1 and MOGAT3 gene with growth traits in different growth stages in Holstein calves.

作者信息

Gökçe Gökhan, Bayraktar Mervan

机构信息

Department of Animal Science, Çukurova University, Adana, Türkiye.

出版信息

Arch Anim Breed. 2022 Aug 10;65(3):301-308. doi: 10.5194/aab-65-301-2022. eCollection 2022.

Abstract

The members of the monoacylglycerol acyltransferase (MOGAT) family are essential candidate genes that influence economic traits associated with triglyceride synthesis, dietary fat absorption, and storage in livestock. In addition, the MOGAT gene family may also play an essential function in human polygenic diseases, like type 2 diabetes and obesity. The present study was conducted on Holstein calves to find the association between MOGAT1, MOGAT3/g.A229G, and MOGAT3/g.G1627A and growth traits. The polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) method was performed for genotyping the MOGAT1, MOGAT3/g.A229G, and MOGAT3/g.G1627A genes' locus using the , , and restriction enzyme. The allele frequency of A and G of the MOGAT1 locus was 0.79 and 0.21, respectively, while the genotype frequency was 0.65, 0.28, and 0.07 for AA, AG, and GG, respectively. While the allele and genotype frequencies of the MOGAT3/g.A229G locus were 00.57( ), 0.43( ), 0.35( ), 0.45( ), and 0.20( ), the allele and genotype frequencies of the MOGAT3/g.G1627A locus were 0.49( ), 0.51( ), 0.25( ), 0.49( ), and 0.26( ). Chi-square analysis showed that MOGAT3/g.G1627A distribution was at the Hardy-Weinberg disequilibrium (    0.05), and MOGAT1 and MOGAT3/g.A229G distribution was at the Hardy-Weinberg equilibrium (    0.05). In total, two statistical methods (general linear model (GLM) and PROC MIXED) were used to identify an association between gene locus and growth traits. An association analysis showed a statistically significant difference between the MOGAT1 and body weight, body length, and chest circumference, MOGAT3/g.A229G with average daily gain (ADG) and withers height, and MOGAT3/g.G1627A with body weight and body length (    0.05). The results confirmed that the MOGAT1, MOGAT3/g.A229G, and MOGAT3/g.G1627A locus are strong candidate genes that could be considered molecular markers for growth traits in cattle breeding.

摘要

单酰甘油酰基转移酶(MOGAT)家族成员是影响家畜甘油三酯合成、膳食脂肪吸收和储存相关经济性状的重要候选基因。此外,MOGAT基因家族在人类多基因疾病(如2型糖尿病和肥胖症)中可能也发挥着重要作用。本研究以荷斯坦犊牛为对象,旨在探究MOGAT1、MOGAT3/g.A229G和MOGAT3/g.G1627A与生长性状之间的关联。采用聚合酶链反应-限制性片段长度多态性(PCR-RFLP)方法,使用[具体酶1]、[具体酶2]和[具体酶3]限制性内切酶对MOGAT1、MOGAT3/g.A229G和MOGAT3/g.G1627A基因位点进行基因分型。MOGAT1位点A和G的等位基因频率分别为0.79和0.21,而AA、AG和GG的基因型频率分别为0.65、0.28和0.07。MOGAT3/g.A229G位点的等位基因和基因型频率分别为0.57([具体基因型1])、0.43([具体基因型2])、0.35([具体基因型3])、0.45([具体基因型4])和0.20([具体基因型5]),MOGAT3/g.G1627A位点的等位基因和基因型频率分别为0.49([具体基因型6])、0.51([具体基因型7])、0.25([具体基因型8])、0.49([具体基因型9])和0.26([具体基因型10])。卡方分析表明,MOGAT3/g.G1627A的分布处于哈迪-温伯格不平衡状态([P值1]<0.05),而MOGAT1和MOGAT3/g.A229G的分布处于哈迪-温伯格平衡状态([P值2]>0.05)。总共使用了两种统计方法(一般线性模型(GLM)和PROC MIXED)来确定基因位点与生长性状之间的关联。关联分析显示,MOGAT1与体重、体长和胸围之间存在统计学显著差异,MOGAT3/g.A229G与平均日增重(ADG)和肩高之间存在统计学显著差异,MOGAT3/g.G1627A与体重和体长之间存在统计学显著差异([P值3]<0.05)。结果证实,MOGAT1、MOGAT3/g.A229G和MOGAT3/g.G1627A位点是强大的候选基因,可被视为牛育种中生长性状的分子标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61c9/9400126/002028f2da03/aab-65-301-g01.jpg

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