畜牧兽医学报 ›› 2024, Vol. 55 ›› Issue (12): 5511-5526.doi: 10.11843/j.issn.0366-6964.2024.12.017

• 遗传育种 • 上一篇    下一篇

全基因组选择信号鉴定高原型藏羊毛用性状候选基因及关联分析

祁军英1(), 裴全帮1, 张文魁1, 徐腾1, 左明星1, 韩步鹰2, 李雪2, 刘德会2, 王松2, 周佰成3, 赵凯2, 田得红2,*()   

  1. 1. 青海省种羊繁育推广服务中心, 刚察 812300
    2. 中国科学院西北高原生物研究所, 西宁 810008
    3. 青海省畜牧总站, 西宁 810000
  • 收稿日期:2024-05-28 出版日期:2024-12-23 发布日期:2024-12-27
  • 通讯作者: 田得红 E-mail:13639787053@163.com;tiandehong@nwipb.cas.cn
  • 作者简介:祁军英(1991-), 女, 青海西宁人, 本科, 助理畜牧师, 主要从事动物科学研究, E-mail: 13639787053@163.com
  • 基金资助:
    青海省自然科学基金项目(2023-ZJ-748)

Genome-wide Selective Signal Identification and Association Analysis of Candidate Genes for Tibetan Sheep Wool Traits

QI Junying1(), PEI Quanbang1, ZHANG Wenkui1, XU Teng1, ZUO Mingxing1, HAN Buying2, LI Xue2, LIU Dehui2, WANG Song2, ZHOU Baicheng3, ZHAO Kai2, TIAN Dehong2,*()   

  1. 1. Qinghai Sheep Breeding and Promotion Service Center, Gangcha 812300, China
    2. Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, China
    3. Qinghai Provincial Animal Husbandry Station, Xining 810000, China
  • Received:2024-05-28 Online:2024-12-23 Published:2024-12-27
  • Contact: TIAN Dehong E-mail:13639787053@163.com;tiandehong@nwipb.cas.cn

摘要:

旨在通过全基因组受选择区域信号检测结合单核苷酸多态性与性状关联分析鉴定出高原型藏羊羊毛性状新的分子标记和候选基因。本研究采集3~4周岁健康母羊耳组织与羊毛作为试验素材,其中高原型藏羊母羊119只,欧拉型藏羊母羊89只,总计208只。利用群体遗传分化指数(Fst)和碱基多样性比值(Pi Ratio)进行全基因组选择性清除分析,通过功能注释筛选候选基因,并进行GO和KEGG富集分析,对108只高原型藏羊进行候选基因外显子Sanger测序单核苷酸多态性与表型数据关联分析,鉴定出与羊毛性状相关的功能位点。分析结果表明:共有1 084个受选择区域,注释到1 037个候选基因;通过对功能基因的注释并结合文献分析,发现GHR、FGFR3、MC1R、MITF、FGF5、WNT2B和WNT5A等7个基因与羊毛性状有潜在关联,其中FGF5(exon6:c.954C/T: p.227P/P)同义突变位点和首次发现的FGFR3(exon6:c.1092C/T: p.364A/A)同义突变位点与羊毛纤维性能关联,并且2个位点均未偏离哈温平衡,这2个基因可能是高原型藏羊羊毛性状重要的候选基因。本研究发现有助于了解高原型藏羊羊毛性状的生产遗传基础,为该品种绵羊的分子育种技术提供参考,也为保护与利用地方优异种质遗传资源提供科学依据。

关键词: 高原型藏羊, 全基因组选择信号, 毛用性状, 关联分析

Abstract:

The objective of this study was to identify novel molecular markers and candidate genes associated with wool traits in plateau Tibetan sheep through a combination of genome-wide selected region signal detection, single nucleotide polymorphism analysis, and trait association analysis. In this study, ear tissue and wool samples were collected from 208 healthy ewes aged 3-4 years old, including 119 plateau-type ewes and 89 Euler-type ewes. Population genetic differentiation index (Fst) and base diversity ratio (Pi Ratio) were employed for genome-wide selective clearance analysis. Candidate genes were identified through functional annotation, followed by GO and KEGG enrichment analyses. Furthermore, correlation analysis between single nucleotide polymorphisms and phenotypic data was conducted using exon Sanger sequencing on a subset of 108 Tibetan plateau sheep to identify functional loci related to wool traits. The results revealed that a total of 1 084 selected regions with annotations for 1 037 candidate genes. Through functional gene annotation and literature analysis, 7 potential candidate genes related to wool traits were identified: GHR, FGFR3, MC1R, MITF, FGF5, WNT2B, and WNT5A. Notably, FGF5 (exon6:c.954C/T: p227P/P) synonymous mutation site and FGFR3 (exon6: c1092C/T: p364A/A) synonym mutation sites were found to be associated with wool fiber performance without deviation from Hardy-Weinberg equilibrium.These two genes may serve as important candidate genes for the improvement of wool traits in plateau Tibetan sheep.This study provides valuable insights into the genetic basis underlying the production of wool traits in plateau Tibetan sheep.It also offers guidance for molecular breeding techniques specific to this breed while providing a scientific foundation for the conservation and utilization of local germplasm resources.

Key words: Tibetan sheep, genome-wide selection signal, wool traits, association analysis

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