生物学杂志 ›› 2026, Vol. 43 ›› Issue (4): 23-.doi: 10.3969/j.issn.2095-1736.2026.04.023

• 高原动物环境适应专题 • 上一篇    下一篇

高原鼠兔肠道菌群结构组成对低氧胁迫的响应

陈欣扬, 王义弘, 陈慧青, 姚宝辉, 曲家鹏   

  1. 中国科学院西北高原生物研究所, 西宁 810008
  • 出版日期:2026-08-18 发布日期:2026-08-21
  • 通讯作者: 曲家鹏,博士,研究员,研究方向为动物生态学,E-mail:jpqu@nwipb.cas.cn
  • 作者简介:陈欣扬,硕士研究生,研究方向为动物适应与进化,E-mail:chenxinyang@nwipb.cas.cn
  • 基金资助:
    国家自然科学基金项目(32471603); 青海省科技厅科技特派员专项(2025-NK-P42); 2024年第二批中央林业改革发展基金项目(2024-TG16)

Response of gut microbiota structural composition in plateau pikas to hypoxic stress

CHEN Xinyang, WANG Yihong, CHEN Huiqing, YAO Baohui, QU Jiapeng   

  1. Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, China
  • Online:2026-08-18 Published:2026-08-21

摘要: 宿主饮食和环境因子是塑造肠道微生物群落的关键驱动因素。尽管高原鼠兔肠道菌群结构随海拔变化,但高原环境存在低温和低氧复合胁迫,低氧作为关键驱动因子的独立作用亟待通过控制实验阐明。为此,本研究在严格调控温度的条件下开展低氧胁迫实验,采用宏基因组测序技术,比较2100 m海拔(PL组)和模拟6000 m海拔(PH组)高原鼠兔肠道微生物的组成和结构差异。研究结果表明,低氧胁迫未引起高原鼠兔肠道菌群多样性的显著变化。随机性过程仍在群落构建机制中占主导地位,但其作用因扩散限制的减弱而显著降低。鼠兔肠道菌群可划分为两个互为替代的群落类型,其中理研菌属、阿克曼氏菌属为高丰度差异菌属,且阿克曼氏菌在PH组中的丰度显著降低。与PL组相比,PH组的微生物共现网络表现出更高的结构稳定性。本研究揭示了低氧胁迫对高原鼠兔肠道菌群结构组成的影响,为深入理解动物对高原低氧环境的适应提供了新的见解。

关键词: 环境胁迫, 低氧, 肠道菌群, 宏基因组, 高原鼠兔

Abstract: Host diet and environmental factors are key drivers shaping the gut microbiota. Although the gut microbiota structure of plateau pikas varies with altitude, the independent role of hypoxia remains to be clarified through controlled experiments, given that the plateau environment involves both cold and hypoxic stresses. Therefore, under strictly controlled temperature conditions, experiments on hypoxic stress were conducted, and metagenomic sequencing technology was used to compare the structural composition of the gut microbiota of plateau pikas at 2100 m altitude (PL) and those maintained at 6000 m altitude (PH). The results showed that hypoxia did not cause significant changes in the diversity of the gut microbiota. Stochastic processes still dominated the community assembly mechanism, but this role was significantly reduced due to the weakening of dispersal limitation. The gut microbiota could be divided into two distinct community types, withRikenellaandAkkermansiabeing differentially abundant genera, among which the abundance of Akkermansiaceae was significantly reduced. Compared with that of the PL group, the co-occurrence network of the PH group showed higher structural stability. This study revealed the impact of hypoxia on the gut microbiota structural composition in plateau pikas, providing new insights into the adaptation to hypoxia in animals on the plateau.

Key words: environmental stress, hypoxia, gut microbiota, metagenome, plateau pika

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