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通过全基因组测序分析从多个中国地方鸡种中鉴定与高原适应性相关的候选基因。

Identification of candidate genes related to highland adaptation from multiple Chinese local chicken breeds by whole genome sequencing analysis.

作者信息

Nan Jiuhong, Yang Sendong, Zhang Xiaojian, Leng Tianze, Zhuoma Joan, Zhuoma Rensang, Yuan Jingwei, Pi Jinsong, Sheng Zheya, Li Shijun

机构信息

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

Key Laboratory of Marine Ecosystem Dynamics, Second Institute of Oceanography, Ministry of Natural Resources, Hangzhou, China.

出版信息

Anim Genet. 2023 Feb;54(1):55-67. doi: 10.1111/age.13268. Epub 2022 Oct 28.

Abstract

Understanding the genetic mechanism of highland adaptation is of great importance for breeding improvement of Tibetan chickens (TBC). Some studies of TBC have identified some candidate genes and pathways from multiple subgroups, but the related genetic mechanisms remain largely unknown. Different genetic backgrounds and the independent genetic basis of highland adaptation make it difficult to identity the selective region of highland adaptation with all TBC samples. In this study, we conducted pre-analysis in a large-scale population to select a TBC subgroup with the purest and highest level of highland-specific lineage for the further analysis. Finally, the 37 samples from a TBC subgroup and 19 Lahsa White chickens were used to represent the highland group for further analysis with 80 samples from five Chinese local lowland breeds as controls. Population structure analysis revealed that highland adaptation significantly affected population stratification in Chinese local chicken breeds. Genome-wide selection signal analysis identified 201 candidate genes associated with highland adaptation of TBC, and these genes were significantly enriched in calcium signaling, vascular smooth muscle contraction and the cellular response to oxidative stress pathways. Additionally, we identified a narrow 1.76 kb region containing an overlapping region between HBZ and an active enhancer, and our identified region showed a highly significant signal. The highland group selected the haplotype with high activity to improve the oxygen-carrying capacity, thus being adapted to a hypoxic environment. We also found that STX2 was significantly selected in the highland group, thus potentially reducing the oxidative stress caused by hypoxia, and that STX2 exhibited the opposite effects on highland adaptation and reproductive traits. Our findings advance our understanding of extreme environment adaptation of highland chickens, and provide some variants and genes beneficial to TBC genetic breeding improvement.

摘要

了解高原适应性的遗传机制对于藏鸡(TBC)的育种改良具有重要意义。一些关于藏鸡的研究已经从多个亚群中鉴定出了一些候选基因和通路,但相关的遗传机制仍然很大程度上未知。不同的遗传背景和高原适应性的独立遗传基础使得难以用所有藏鸡样本确定高原适应性的选择区域。在本研究中,我们在大规模群体中进行了预分析,以选择一个具有最纯正和最高水平高原特异性谱系的藏鸡亚群进行进一步分析。最后,来自一个藏鸡亚群的37个样本和19个拉萨白鸡被用作高原组,以五个中国地方低地品种的80个样本作为对照进行进一步分析。群体结构分析表明,高原适应性显著影响了中国地方鸡品种的群体分层。全基因组选择信号分析确定了201个与藏鸡高原适应性相关的候选基因,这些基因在钙信号传导、血管平滑肌收缩和细胞对氧化应激途径中显著富集。此外,我们确定了一个狭窄的1.76 kb区域,该区域包含HBZ和一个活性增强子之间的重叠区域,我们确定的区域显示出高度显著的信号。高原组选择了具有高活性的单倍型来提高携氧能力,从而适应低氧环境。我们还发现STX2在高原组中被显著选择,因此可能减少低氧引起的氧化应激,并且STX2在高原适应性和繁殖性状上表现出相反的作用。我们的研究结果推进了我们对高原鸡极端环境适应性的理解,并提供了一些有利于藏鸡遗传育种改良的变异和基因。

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