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摩拉水牛首次产犊年龄的基因型与环境互作的基因组分析

Genomic analysis of genotype-environment interaction in age at first calving of Murrah buffaloes.

作者信息

Dos Santos Jessica Cristina Gonçalves, de Araujo Neto Francisco Ribeiro, de Oliveira Seno Leonardo, de Abreu Santos Daniel Jordan, de Oliveira Katryne Jordana, Aspilcueta-Borquis Rusbel Raul, de Oliveira Henrique Nunes, Tonhati Humberto

机构信息

Faculdade de Ciências Agrárias e Veterinárias de Jaboticabal - UNESP, Jaboticabal, São Paulo, Brazil.

Instituto Federal de Ciência e Tecnologia Goiano - IFGoiano, Rio Verde, Goiás, Brazil.

出版信息

J Anim Breed Genet. 2025 Jan;142(1):57-68. doi: 10.1111/jbg.12885. Epub 2024 Jun 4.

Abstract

Age at first calving (AFC) is a measure of sexual maturity associated with the start of productive life of dairy animals. Additionally, a lower AFC reduces the generation interval and early culling of females. However, AFC has low heritability, making it a trait highly influenced by environmental factors. In this scenario, one way to improve the reproductive performance of buffalo cows is to select robust animals according to estimated breeding value (EBV) using models that include genotype-environment interaction (GEI) with the application of reaction norm models (RNMs). This can be achieved by understanding the genomic basis related to GEI of AFC. Thus, in this study, we aimed to predict EBV considering GEI via the RNM and identify candidate genes related to this component in dairy buffaloes through genome-wide association studies (GWAS). We used 1795 AFC records from three Murrah buffalo herds and formed environmental gradients (EGs) from contemporary group solutions obtained from genetic analysis of 270-day cumulative milk yield. Heritability estimates ranged from 0.15 to 0.39 along the EG. GWAS of the RNM slope parameter identified important genomic regions. The genomic window that explained the highest percentage of genetic variance of the slope (0.67%) was located on BBU1. After functional analysis, five candidate genes were detected, involved in two biological processes. The results suggested the existence of a GEI for AFC in Murrah buffaloes, with reclassification of animals when different environmental conditions were considered. The inclusion of genomic information increased the accuracy of breeding values for the intercept and slope of the reaction norm. GWAS analysis suggested that important genes associated with the AFC reaction norm slope were possibly also involved in biological processes related to lipid metabolism and immunity.

摘要

首次产犊年龄(AFC)是衡量与奶牛生产生活开始相关的性成熟的指标。此外,较低的AFC可缩短世代间隔并减少母牛的早期淘汰。然而,AFC的遗传力较低,使其成为受环境因素高度影响的性状。在这种情况下,提高水牛母牛繁殖性能的一种方法是使用包含基因型-环境互作(GEI)的模型,通过反应规范模型(RNM)根据估计育种值(EBV)选择健壮的动物。这可以通过了解与AFC的GEI相关的基因组基础来实现。因此,在本研究中,我们旨在通过RNM预测考虑GEI的EBV,并通过全基因组关联研究(GWAS)鉴定奶水牛中与该成分相关的候选基因。我们使用了来自三个摩拉水牛群的1795条AFC记录,并根据从270天累计产奶量的遗传分析中获得的当代组解决方案形成环境梯度(EGs)。沿EG的遗传力估计值范围为0.15至0.39。RNM斜率参数的GWAS确定了重要的基因组区域。解释斜率遗传方差百分比最高(0.67%)的基因组窗口位于BBU1上。经过功能分析,检测到五个候选基因,涉及两个生物学过程。结果表明摩拉水牛中存在AFC的GEI,在考虑不同环境条件时动物会重新分类。纳入基因组信息提高了反应规范截距和斜率育种值的准确性。GWAS分析表明,与AFC反应规范斜率相关的重要基因可能也参与了与脂质代谢和免疫相关的生物学过程。

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