Genome-wide selection reveals candidate genes associated with multiple teats in Hu sheep.

IF 1.7 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal Biotechnology Pub Date : 2024-11-01 Epub Date: 2024-07-21 DOI:10.1080/10495398.2024.2380766
Wen Zhou, Cheng-Long Zhang, Zhipeng Han, Xiaopeng Li, Xinyu Bai, Jieru Wang, Ruizhi Yang, Shudong Liu
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Abstract

Increasing the number of teats in sheep helps to improve the survival rate of sheep lambs after birth. In order to analyze the candidate genes related to the formation of multiple teats in Hu sheep, the present study was conducted to investigate the genetic pattern of multiple teats in Hu sheep. In this study, based on genome-wide data from 157 Hu sheep, Fst, xp-EHH, Pi and iHS signaling were performed, and the top 5% signal regions of each analyzed result were annotated based on the Oar_v4.0 for sheep. The results show that a total of 142 SNP loci were selected. We found that PTPRG, TMEM117 and LRP1B genes were closely associated with polypodium formation in Hu sheep, in addition, among the candidate genes related to polypodium we found genes such as TMEM117, SLC25A21 and NCKAP5 related to milk traits. The present study screened out candidate genes for the formation of multiple teats at the genomic level in Hu sheep.

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全基因组选择揭示了与胡羊多乳头相关的候选基因。
增加绵羊的乳头数量有助于提高绵羊羔羊出生后的存活率。为了分析与胡羊多乳头形成相关的候选基因,本研究对胡羊多乳头的遗传模式进行了研究。本研究基于157只胡羊的全基因组数据,对Fst、xp-EHH、Pi和iHS信号转导进行了分析,并根据绵羊Oar_v4.0对每个分析结果的前5%信号区进行了注释。结果显示,共筛选出 142 个 SNP 位点。我们发现,PTPRG、TMEM117 和 LRP1B 基因与胡羊多角体的形成密切相关,此外,在与多角体相关的候选基因中,我们还发现 TMEM117、SLC25A21 和 NCKAP5 等基因与牛奶性状相关。本研究从基因组水平筛选出了胡羊多乳头形成的候选基因。
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来源期刊
Animal Biotechnology
Animal Biotechnology 工程技术-奶制品与动物科学
CiteScore
2.90
自引率
5.40%
发文量
230
审稿时长
>12 weeks
期刊介绍: Biotechnology can be defined as any technique that uses living organisms (or parts of organisms like cells, genes, proteins) to make or modify products, to improve plants, animals or microorganisms for a specific use. Animal Biotechnology publishes research on the identification and manipulation of genes and their products, stressing applications in domesticated animals. The journal publishes full-length articles and short research communications, as well as comprehensive reviews. The journal also provides a forum for regulatory or scientific issues related to cell and molecular biology applied to animal biotechnology. Submissions on the following topics are particularly welcome: - Applied microbiology, immunogenetics and antibiotic resistance - Genome engineering and animal models - Comparative genomics - Gene editing and CRISPRs - Reproductive biotechnologies - Synthetic biology and design of new genomes
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