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本地绵羊的全基因组测序为快速适应极端环境提供了见解。

Whole-Genome Sequencing of Native Sheep Provides Insights into Rapid Adaptations to Extreme Environments.

作者信息

Yang Ji, Li Wen-Rong, Lv Feng-Hua, He San-Gang, Tian Shi-Lin, Peng Wei-Feng, Sun Ya-Wei, Zhao Yong-Xin, Tu Xiao-Long, Zhang Min, Xie Xing-Long, Wang Yu-Tao, Li Jin-Quan, Liu Yong-Gang, Shen Zhi-Qiang, Wang Feng, Liu Guang-Jian, Lu Hong-Feng, Kantanen Juha, Han Jian-Lin, Li Meng-Hua, Liu Ming-Jun

机构信息

CAS Key Laboratory of Animal Ecology and Conservation Biology, Institute of Zoology, Chinese Academy of Sciences (CAS), Beijing, China.

Animal Biotechnology Research Institute, Xinjiang Academy of Animal Science, Urumqi, China.

出版信息

Mol Biol Evol. 2016 Oct;33(10):2576-92. doi: 10.1093/molbev/msw129. Epub 2016 Jul 8.

Abstract

Global climate change has a significant effect on extreme environments and a profound influence on species survival. However, little is known of the genome-wide pattern of livestock adaptations to extreme environments over a short time frame following domestication. Sheep (Ovis aries) have become well adapted to a diverse range of agroecological zones, including certain extreme environments (e.g., plateaus and deserts), during their post-domestication (approximately 8-9 kya) migration and differentiation. Here, we generated whole-genome sequences from 77 native sheep, with an average effective sequencing depth of ∼5× for 75 samples and ∼42× for 2 samples. Comparative genomic analyses among sheep in contrasting environments, that is, plateau (>4,000 m above sea level) versus lowland (<100 m), high-altitude region (>1500 m) versus low-altitude region (<1300 m), desert (<10 mm average annual precipitation) versus highly humid region (>600 mm), and arid zone (<400 mm) versus humid zone (>400 mm), detected a novel set of candidate genes as well as pathways and GO categories that are putatively associated with hypoxia responses at high altitudes and water reabsorption in arid environments. In addition, candidate genes and GO terms functionally related to energy metabolism and body size variations were identified. This study offers novel insights into rapid genomic adaptations to extreme environments in sheep and other animals, and provides a valuable resource for future research on livestock breeding in response to climate change.

摘要

全球气候变化对极端环境有重大影响,并对物种生存产生深远影响。然而,对于家畜在驯化后的短时间内适应极端环境的全基因组模式却知之甚少。绵羊(Ovis aries)在驯化后(约8000 - 9000年前)的迁徙和分化过程中,已很好地适应了各种农业生态区,包括某些极端环境(如高原和沙漠)。在此,我们对77只本地绵羊进行了全基因组测序,75个样本的平均有效测序深度约为5×,2个样本的平均有效测序深度约为42×。通过对处于对比环境中的绵羊进行比较基因组分析,即高原(海拔>4000米)与低地(海拔<100米)、高海拔地区(海拔>1500米)与低海拔地区(海拔<1300米)、沙漠(年平均降水量<10毫米)与高湿度地区(年平均降水量>600毫米)、干旱区(年降水量<400毫米)与湿润区(年降水量>400毫米),检测到了一组新的候选基因以及可能与高海拔地区的缺氧反应和干旱环境中的水分重吸收相关的通路和基因本体(GO)类别。此外,还鉴定出了与能量代谢和体型变化功能相关的候选基因和GO术语。本研究为绵羊及其他动物对极端环境的快速基因组适应提供了新的见解,并为未来应对气候变化的家畜育种研究提供了宝贵资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51d4/5026255/ac54cd95b4bf/msw129f1p.jpg

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