Adaptation of mammals to hypoxia.

Animal Models and Experimental Medicine Pub Date : 2021-11-29 eCollection Date: 2021-12-01 DOI:10.1002/ame2.12189
Fang Li, Zhenglei Qiao, Qijiao Duan, Eviatar Nevo
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引用次数: 6

Abstract

Oxygen plays a pivotal role in the metabolism and activities of mammals. However, oxygen is restricted in some environments-subterranean burrow systems or habitats at high altitude or deep in the ocean-and this could exert hypoxic stresses such as oxidative damage on organisms living in these environments. In order to cope with these stresses, organisms have evolved specific strategies to adapt to hypoxia, including changes in physiology, gene expression regulation, and genetic mutations. Here, we review how mammals have adapted to the three high-altitude plateaus of the world, the limited oxygen dissolved in deep water habitats, and underground tunnels, with the aim of better understanding the adaptation of mammals to hypoxia.

Abstract Image

Abstract Image

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哺乳动物对缺氧的适应。
氧气在哺乳动物的新陈代谢和活动中起着关键作用。然而,在一些环境中,氧气受到限制,地下洞穴系统或高海拔或海洋深处的栖息地,这可能会对生活在这些环境中的生物体产生缺氧应激,如氧化损伤。为了应对这些压力,生物体已经进化出适应缺氧的特定策略,包括生理学、基因表达调控和基因突变的变化。在这里,我们回顾了哺乳动物是如何适应世界上三个高海拔高原、溶解在深水栖息地的有限氧气和地下隧道的,目的是更好地了解哺乳动物对缺氧的适应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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