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牛和水牛繁殖性状的遗传特征:从牛到水牛的经验教训

Genetic Features of Reproductive Traits in Bovine and Buffalo: Lessons From Bovine to Buffalo.

作者信息

Shao Baoshun, Sun Hui, Ahmad Muhammad Jamil, Ghanem Nasser, Abdel-Shafy Hamdy, Du Chao, Deng Tingxian, Mansoor Shahid, Zhou Yang, Yang Yifen, Zhang Shujun, Yang Liguo, Hua Guohua

机构信息

Key Lab of Agricultural Animal Genetics, Breeding and Reproduction of Ministry of Education, College of Animal Science and Technology, Huazhong Agricultural University, Wuhan, China.

Department of Animal Production, Faculty of Agriculture, Cairo University, Giza, Egypt.

出版信息

Front Genet. 2021 Mar 23;12:617128. doi: 10.3389/fgene.2021.617128. eCollection 2021.

Abstract

Bovine and buffalo are important livestock species that have contributed to human lives for more than 1000 years. Improving fertility is very important to reduce the cost of production. In the current review, we classified reproductive traits into three categories: ovulation, breeding, and calving related traits. We systematically summarized the heritability estimates, molecular markers, and genomic selection (GS) for reproductive traits of bovine and buffalo. This review aimed to compile the heritability and genome-wide association studies (GWASs) related to reproductive traits in both bovine and buffalos and tried to highlight the possible disciplines which should benefit buffalo breeding. The estimates of heritability of reproductive traits ranged were from 0 to 0.57 and there were wide differences between the populations. For some specific traits, such as age of puberty (AOP) and calving difficulty (CD), the majority beef population presents relatively higher heritability than dairy cattle. Compared to bovine, genetic studies for buffalo reproductive traits are limited for age at first calving and calving interval traits. Several quantitative trait loci (QTLs), candidate genes, and SNPs associated with bovine reproductive traits were screened and identified by candidate gene methods and/or GWASs. The IGF1 and LEP pathways in addition to non-coding RNAs are highlighted due to their crucial relevance with reproductive traits. The distribution of QTLs related to various traits showed a great differences. Few GWAS have been performed so far on buffalo age at first calving, calving interval, and days open traits. In addition, we summarized the GS studies on bovine and buffalo reproductive traits and compared the accuracy between different reports. Taken together, GWAS and candidate gene approaches can help to understand the molecular genetic mechanisms of complex traits. Recently, GS has been used extensively and can be performed on multiple traits to improve the accuracy of prediction even for traits with low heritability, and can be combined with multi-omics for further analysis.

摘要

牛和水牛是重要的家畜品种,在1000多年来一直对人类生活有所贡献。提高繁殖力对于降低生产成本非常重要。在本综述中,我们将繁殖性状分为三类:排卵、配种和产犊相关性状。我们系统地总结了牛和水牛繁殖性状的遗传力估计值、分子标记和基因组选择(GS)。本综述旨在汇编与牛和水牛繁殖性状相关的遗传力和全基因组关联研究(GWAS),并试图突出可能有益于水牛育种的学科。繁殖性状的遗传力估计值范围为0至0.57,不同群体之间存在很大差异。对于一些特定性状,如初情期年龄(AOP)和产犊难度(CD),大多数肉牛群体的遗传力相对高于奶牛。与牛相比,水牛繁殖性状在初产年龄和产犊间隔性状方面的遗传研究有限。通过候选基因方法和/或GWAS筛选并鉴定了几个与牛繁殖性状相关的数量性状位点(QTL)、候选基因和单核苷酸多态性(SNP)。由于IGF1和LEP途径以及非编码RNA与繁殖性状至关重要的相关性而受到关注。与各种性状相关的QTL分布差异很大。到目前为止,关于水牛初产年龄、产犊间隔和空怀天数性状的GWAS很少。此外,我们总结了牛和水牛繁殖性状的GS研究,并比较了不同报告之间的准确性。综上所述,GWAS和候选基因方法有助于理解复杂性状的分子遗传机制。最近,GS已被广泛应用,可以对多个性状进行分析,以提高预测准确性,即使对于遗传力低的性状,并且可以与多组学结合进行进一步分析。

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