Genomic and transcriptomic analysis reveals the genetic diversity and adaptive signatures of Maduo sheep

IF 1.6 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Li-Na Chang , Xue Gao , Shi-Xin Wu , Rui-Dong Wan , Zhan-Xing Yang , Hai-Mei Zhao , Ke Zhang , Xin-Quan Zhao , You-Gui Fang , Gong-Xue Jia
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Abstract

The alpine grassland ecosystem is characterized by high-altitude, hypoxia, harsh cold and strong radiation conditions, and the unique growth performance and stress resistance of indigenous domestic animals. Maduo sheep, a newly discovered Tibetan sheep breed living in the source area of the Yellow River, is famous for its high-quality wool and meat production. However, its genome and genetic features still need to be deciphered. The genomes of 12 Maduo sheep were sequenced on a genome-wide scale and compared with those of 6 other Tibetan sheep breeds. Population structure analyses revealed that Maduo sheep were distinctly separated from other Tibetan sheep breeds with a higher genetic diversity. Strong selective signatures were detected by the FST and XP-CLR results, identifying MREG, RXFP2 and SYNDIG1 in Maduo sheep. To explore the molecular regulation of Maduo sheep adaptability to the high-altitude environment, the muscle tissues of 3 Tibetan sheep populations living at different altitudes (1500 m, 2500 m and 4200 m) were sampled for RNA sequencing. We found 132, 269 and 149 specific transcripts from 1500 m, 2500 m and 4200 m groups respectively. A total of 327 differentially expressed transcripts were found in both 2500 m vs. 1500 m and 4200 m vs. 1500 m comparisons, which were closely related to stem cell differentiation, p38-MAPK cascade, skeletal system morphogenesis, etc. On the other hand, 122 differentially expressed transcripts were found in both 4200 m vs. 1500 m and 4200 m vs. 2500 m comparisons, which should be responsible for adaptive immune response, cytoskeleton, apoptotic regulation and so on. This study provides important genomic insights into the genetic resources of Maduo sheep and could be helpful for understanding the mechanisms of hypoxic adaptability.

基因组和转录组分析揭示了马多羊的遗传多样性和适应特征
高寒草原生态系统具有高海拔、缺氧、严寒和强辐射等特点,土著家畜具有独特的生长性能和抗逆性。玛多羊是生活在黄河源头地区的一个新发现的藏羊品种,以产优质羊毛和肉而闻名。然而,它的基因组和遗传特征仍有待破译。研究人员对12只玛多羊的基因组进行了全基因组测序,并与其他6个藏羊品种的基因组进行了比较。种群结构分析表明,玛多绵羊与其他西藏绵羊品种明显分离,遗传多样性较高。FST和XP-CLR结果检测到强烈的选择性特征,确定了玛多羊的MREG、RXFP2和SYNDIG1。为了探索玛多绵羊对高海拔环境适应性的分子调控,我们对生活在不同海拔(1500 米、2500 米和 4200 米)的 3 个藏绵羊种群的肌肉组织进行了 RNA 测序。我们分别在海拔 1500 米、2500 米和 4200 米的群体中发现了 132、269 和 149 个特异性转录本。在 2500 米与 1500 米和 4200 米与 1500 米的比较中,共发现了 327 个差异表达转录本,这些转录本与干细胞分化、p38-MAPK 级联、骨骼系统形态发生等密切相关。另一方面,在 4200 m 与 1500 m 和 4200 m 与 2500 m 的比较中发现了 122 个差异表达转录本,它们应该负责适应性免疫反应、细胞骨架、细胞凋亡调控等。这项研究为了解玛多绵羊的遗传资源提供了重要的基因组学信息,有助于了解玛多绵羊缺氧适应性的机制。
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来源期刊
Small Ruminant Research
Small Ruminant Research 农林科学-奶制品与动物科学
CiteScore
3.10
自引率
11.10%
发文量
210
审稿时长
12.5 weeks
期刊介绍: Small Ruminant Research publishes original, basic and applied research articles, technical notes, and review articles on research relating to goats, sheep, deer, the New World camelids llama, alpaca, vicuna and guanaco, and the Old World camels. Topics covered include nutrition, physiology, anatomy, genetics, microbiology, ethology, product technology, socio-economics, management, sustainability and environment, veterinary medicine and husbandry engineering.
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