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对西藏裂腹鱼属鱼类普氏裸鲤的综合转录组分析揭示了它如何适应高海拔水生生活。

Comprehensive transcriptomic analysis of Tibetan Schizothoracinae fish Gymnocypris przewalskii reveals how it adapts to a high altitude aquatic life.

作者信息

Tong Chao, Fei Tian, Zhang Cunfang, Zhao Kai

机构信息

Key Laboratory of Adaptation and Evolution of Plateau Biota, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining, 810001, China.

Laboratory of Plateau Fish Evolutionary and Functional Genomics, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining, 810001, China.

出版信息

BMC Evol Biol. 2017 Mar 9;17(1):74. doi: 10.1186/s12862-017-0925-z.

Abstract

BACKGROUND

Understanding the genetic basis of adaptation to high altitude life is of paramount importance for preserving and managing genetic diversity in highland animals. This objective has been addressed mainly in terrestrial fauna but rarely in aquatic animals. Tibetan Schizothoracinae fish is the ideal model system in evolutionary biology, carrying key insights into evolutionary genetics of speciation and adaptation at high altitude. Gymnocypris przewalskii is the newly formed Schizothoracinae fish species in the Tibetan Plateau, inhabits chronic cold, extreme saline and alkaline aquatic environment in Lake Qinghai, thus evolving the unique genomic signatures to adapt extremely severe environments.

RESULTS

To characterize its genomic features, we assembled de novo transcriptome of G. przewalskii from Lake Qinghai. Intriguingly, by comparative genomic analyses of G. przewalskii and 8 other fish species, we identified potential expansions in gene families related to energy metabolism, transport and developmental functions, possibly underlying the adaptation to these environmental stresses. Through comprehensive molecular evolution analyses, we found that sets of genes controlling mitochondrion, ion homoeostasis, acid-base balance and innate immunity show significant signals of positive selection. Compared to previous studies on highland fishes, we failed to identify any positively selected genes related to hypoxia response.

CONCLUSIONS

Our findings provide comprehensive insights into the genetic basis of teleost fish that underlie their adaptation to extreme high altitude aquatic life on the Tibetan Plateau.

摘要

背景

了解适应高海拔生活的遗传基础对于保护和管理高地动物的遗传多样性至关重要。这一目标主要在陆生动物中得到解决,但在水生动物中很少涉及。西藏裂腹鱼亚科鱼类是进化生物学中的理想模型系统,对高海拔地区物种形成和适应的进化遗传学具有关键见解。青海裸鲤是青藏高原新形成的裂腹鱼亚科鱼类物种,栖息于青海湖长期寒冷、极端盐碱的水生环境中,从而进化出独特的基因组特征以适应极端恶劣的环境。

结果

为了表征其基因组特征,我们从青海湖组装了青海裸鲤的从头转录组。有趣的是,通过对青海裸鲤和其他8种鱼类的比较基因组分析,我们确定了与能量代谢、运输和发育功能相关的基因家族可能存在扩张,这可能是其适应这些环境压力的基础。通过全面的分子进化分析,我们发现控制线粒体、离子稳态、酸碱平衡和先天免疫的基因集显示出显著的正选择信号。与之前对高地鱼类的研究相比,我们未能鉴定出任何与缺氧反应相关的正选择基因。

结论

我们的研究结果为硬骨鱼适应青藏高原极端高海拔水生生活的遗传基础提供了全面的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4db9/5343388/ee4f3393b7cd/12862_2017_925_Fig1_HTML.jpg

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