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与实验内洛尔牛群体饲料效率指标性状相关的基因组区域

Genomic Regions Associated with Feed Efficiency Indicator Traits in an Experimental Nellore Cattle Population.

作者信息

Olivieri Bianca Ferreira, Mercadante Maria Eugênia Zerlotti, Cyrillo Joslaine Noely Dos Santos Gonçalves, Branco Renata Helena, Bonilha Sarah Figueiredo Martins, de Albuquerque Lucia Galvão, Silva Rafael Medeiros de Oliveira, Baldi Fernando

机构信息

Universidade Estadual Paulista, Faculdade de Ciências Agrárias e Veterinárias, Departamento de Zootecnia, Via de acesso Prof. Paulo Donato Castellane, s/no, CEP 14884-900 Jaboticabal, SP, Brazil.

Instituto de Zootecnia, Centro Avançado de Pesquisa Tecnológica do Agronegócio de Bovinos de Corte, Rodovia Carlos Tonanni, km 94, CEP 14.174-000, Sertãozinho, SP, Brazil.

出版信息

PLoS One. 2016 Oct 19;11(10):e0164390. doi: 10.1371/journal.pone.0164390. eCollection 2016.

Abstract

The objective of this study was to identify genomic regions and metabolic pathways associated with dry matter intake, average daily gain, feed efficiency and residual feed intake in an experimental Nellore cattle population. The high-density SNP chip (Illumina High-Density Bovine BeadChip, 777k) was used to genotype the animals. The SNP markers effects and their variances were estimated using the single-step genome wide association method. The (co)variance components were estimated by Bayesian inference. The chromosome segments that are responsible for more than 1.0% of additive genetic variance were selected to explore and determine possible quantitative trait loci. The bovine genome Map Viewer was used to identify genes. In total, 51 genomic regions were identified for all analyzed traits. The heritability estimated for feed efficiency was low magnitude (0.13±0.06). For average daily gain, dry matter intake and residual feed intake, heritability was moderate to high (0.43±0.05; 0.47±0.05, 0.18±0.05, respectively). A total of 8, 17, 14 and 12 windows that are responsible for more than 1% of the additive genetic variance for dry matter intake, average daily gain, feed efficiency and residual feed intake, respectively, were identified. Candidate genes GOLIM4, RFX6, CACNG7, CACNG6, CAPN8, CAPN2, AKT2, GPRC6A, and GPR45 were associated with feed efficiency traits. It was expected that the response to selection would be higher for residual feed intake than for feed efficiency. Genomic regions harboring possible QTL for feed efficiency indicator traits were identified. Candidate genes identified are involved in energy use, metabolism protein, ion transport, transmembrane transport, the olfactory system, the immune system, secretion and cellular activity. The identification of these regions and their respective candidate genes should contribute to the formation of a genetic basis in Nellore cattle for feed efficiency indicator traits, and these results would support the selection for these traits.

摘要

本研究的目的是在一个实验性内洛尔牛群体中,确定与干物质采食量、平均日增重、饲料效率和剩余饲料采食量相关的基因组区域和代谢途径。使用高密度SNP芯片(Illumina高密度牛基因分型芯片,777k)对动物进行基因分型。使用单步全基因组关联方法估计SNP标记效应及其方差。通过贝叶斯推断估计(协)方差组分。选择贡献率超过1.0%加性遗传方差的染色体片段,以探索和确定可能的数量性状位点。使用牛基因组图谱浏览器识别基因。总共为所有分析性状鉴定出51个基因组区域。饲料效率的遗传力估计值较低(0.13±0.06)。平均日增重、干物质采食量和剩余饲料采食量的遗传力为中等至高(分别为0.43±0.05;0.47±0.05,0.18±0.05)。分别鉴定出了8个、17个、14个和12个窗口,其对干物质采食量、平均日增重、饲料效率和剩余饲料采食量的加性遗传方差贡献率超过1%。候选基因GOLIM4、RFX6、CACNG7、CACNG6、CAPN8、CAPN2、AKT2、GPRC6A和GPR45与饲料效率性状相关。预计剩余饲料采食量的选择反应将高于饲料效率。鉴定出了含有饲料效率指标性状可能QTL的基因组区域。鉴定出的候选基因参与能量利用、蛋白质代谢、离子转运、跨膜转运、嗅觉系统、免疫系统、分泌和细胞活动。这些区域及其各自候选基因的鉴定应有助于在内洛尔牛中形成饲料效率指标性状的遗传基础,这些结果将支持对这些性状的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7245/5070821/9af7378159c5/pone.0164390.g001.jpg

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