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荷斯坦奶牛繁殖力和生殖性状上位性遗传效应的全基因组关联研究

Genome-wide association studies for epistatic genetic effects on fertility and reproduction traits in Holstein cattle.

作者信息

Alves Kristen, Brito Luiz F, Sargolzaei Mehdi, Schenkel Flavio S

机构信息

Centre for Genetic Improvement of Livestock, Department of Animal Biosciences, University of Guelph, Guelph, Ontario, Canada.

Bayer CropScience Inc., Guelph, Ontario, Canada.

出版信息

J Anim Breed Genet. 2023 Nov;140(6):624-637. doi: 10.1111/jbg.12813. Epub 2023 Jun 22.

Abstract

Non-additive genetic effects are well known to play an important role in the phenotypic expression of complex traits, such as fertility and reproduction. In this study, a genome scan was performed using 41,640 single nucleotide polymorphism (SNP) markers to identify genomic regions associated with epistatic (additive-by-additive) effects in fertility and reproduction traits in Holstein cattle. Nine fertility and reproduction traits were analysed on 5825 and 6090 Holstein heifers and cows with phenotypes and genotypes, respectively. The Marginal Epistasis Test (MAPIT) was used to identify SNPs with significant marginal epistatic effects at a chromosome-wise 5% and 10% false discovery rate (FDR) level. The -log (p) values were adjusted by the genomic inflation factor (λ) to correct for the potential bias on the p-values and minimize the possible effects of population stratification. After adjustments, MAPIT enabled the identification of genomic regions with significant marginal epistatic effects for heifers on BTA5 for age at first insemination, BTA3 and BTA24 for non-return rate (NRR); BTA16 and BTA28 for gestation length (GL); BTA1, BTA4 and BTA17 for stillbirth (SB). For the cow traits, MAPIT enabled the identification of regions on BTA11 for GL, BTA11 and BTA16 for SB and BTA19 for calf size (CZ). An additional approach for mapping epistasis in a genome-wide association study was also proposed, in which the genome scan was performed using estimates of epistatic values as the input pseudo-phenotypes, computed using single-trait animal models. Significant SNPs were identified at the chromosome-wise 5% and 10% FDR levels for all traits. For the heifer traits, significant regions were found on BTA7 for AFS; BTA12 for NRR; BTA14 and BTA19 for GL; BTA19 for calving ease (CE); BTA5, BTA24, BTA25 and in the X chromosome for SB; BTA23 and in the X chromosome for CZ and in the X chromosome for the number of services (NS). For the cow traits, significant regions were found on BTA29 and in the X chromosome for NRR, BTA11, BTA16 and in the X chromosome for SB, BTA2 for GL, BTA28 for CZ, BTA19 for calving to first insemination, and in the X chromosome for NS and first insemination to conception. The results suggest that the epistatic genetic effects are likely due to many loci with a small effect rather than few loci with a large effect and/or a single SNP marker alone do not capture the epistatic effects well. The genomic architecture of fertility and reproduction traits is complex, and these results should be validated in independent dairy cattle populations and using alternative statistical models.

摘要

众所周知,非加性遗传效应对复杂性状(如繁殖力和生殖能力)的表型表达起着重要作用。在本研究中,利用41,640个单核苷酸多态性(SNP)标记进行全基因组扫描,以鉴定与荷斯坦奶牛繁殖力和生殖性状上位性(加性×加性)效应相关的基因组区域。分别对5825头和6090头具有表型和基因型的荷斯坦小母牛和母牛的9个繁殖力和生殖性状进行了分析。采用边际上位性检验(MAPIT),在染色体水平5%和10%的错误发现率(FDR)水平下,鉴定具有显著边际上位性效应的SNP。通过基因组膨胀因子(λ)对-log(p)值进行调整,以校正p值的潜在偏差,并尽量减少群体分层的可能影响。调整后,MAPIT能够鉴定出与小母牛首次输精年龄的BTA5、不返情率(NRR)的BTA3和BTA24、妊娠期长度(GL)的BTA16和BTA28、死胎(SB)的BTA1、BTA4和BTA17上具有显著边际上位性效应的基因组区域。对于母牛性状,MAPIT能够鉴定出与GL的BTA11、SB的BTA11和BTA16以及犊牛大小(CZ)的BTA19上的区域。还提出了一种在全基因组关联研究中定位上位性的额外方法,其中使用单性状动物模型计算的上位性值估计作为输入假表型进行全基因组扫描。在染色体水平5%和10%的FDR水平下,对所有性状都鉴定出了显著的SNP。对于小母牛性状,在AFS的BTA7、NRR的BTA12、GL的BTA14和BTA19、产犊难易度(CE)的BTA19、SB的BTA5、BTA24、BTA25和X染色体、CZ的BTA23和X染色体以及输精次数(NS)的X染色体上发现了显著区域。对于母牛性状,在NRR的BTA29和X染色体、SB的BTA11、BTA16和X染色体、GL的BTA2、CZ的BTA28、产犊至首次输精的BTA19以及NS和首次输精至受孕的X染色体上发现了显著区域。结果表明,上位性遗传效应可能是由于许多效应较小的位点,而不是少数效应较大的位点,并且/或者单个SNP标记不能很好地捕获上位性效应。繁殖力和生殖性状的基因组结构复杂,这些结果应在独立的奶牛群体中并使用替代统计模型进行验证。

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