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动物的耐缺氧能力:生物学与应用

Hypoxia tolerance in animals: biology and application.

作者信息

Gorr T A, Wichmann D, Hu J, Hermes-Lima M, Welker A F, Terwilliger N, Wren J F, Viney M, Morris S, Nilsson G E, Deten A, Soliz J, Gassmann M

机构信息

University of Zurich, Winterthurerstrasse 260, CH-8057 Zurich, Switzerland.

出版信息

Physiol Biochem Zool. 2010 Sep-Oct;83(5):733-52. doi: 10.1086/648581.

DOI:10.1086/648581
PMID:20565233
Abstract

Many invertebrates and ectothermic vertebrates successfully cope with a fluctuating supply of ambient oxygen-and consequently, a highly variable tissue oxygenation-through increasing their antioxidant barriers. During chronic deprivation of oxygen, however, the hypometabolic defense mode of the fruit fly Drosophila, the hypoxia-induced behavioral hypothermia of the crayfish Pacifastacus leniusculus, and the production of ethanol during anoxia by the crucian carp Carassius carassius all indicate that these animals are also capable of utilizing a suite of genetic and physiological defenses to survive otherwise lethal reductions in tissue oxygenation. Normally, much of an organism's gene response to hypoxia is orchestrated via the hypoxia-inducible transcription factor HIF. Recent developments expand our view of HIF function even further by highlighting regulatory roles for HIF in the hypometabolism of insects, in the molting and the normoxic immune response of crustaceans, and in the control-via the downstream effector gene erythropoietin-of the hypoxic ventilatory response and pulmonary hypertension in mammals. These and related topics were collectively presented by the authors in a symposium of the 2008 ICA-CBP conference at Mara National Reserve, Kenya, Africa. This synthesis article communicates the essence of the symposium presentations to the wider community.

摘要

许多无脊椎动物和变温脊椎动物通过增强其抗氧化屏障,成功应对周围环境中氧气供应的波动,进而应对高度可变的组织氧合情况。然而,在长期缺氧期间,果蝇的低代谢防御模式、小龙虾美洲鳌虾缺氧诱导的行为性体温过低,以及鲫鱼在缺氧时产生乙醇,都表明这些动物也能够利用一系列遗传和生理防御机制,在组织氧合大幅降低的情况下存活下来,而这种降低在其他情况下可能是致命的。通常,生物体对缺氧的大部分基因反应是通过缺氧诱导转录因子HIF来协调的。最近的研究进展进一步拓展了我们对HIF功能的认识,强调了HIF在昆虫低代谢、甲壳类动物蜕皮和常氧免疫反应中的调节作用,以及在哺乳动物中通过下游效应基因促红细胞生成素对缺氧通气反应和肺动脉高压的控制作用。作者们在非洲肯尼亚马拉开波国家保护区举行的2008年国际比较动物生理学和生物化学学会会议的一个研讨会上共同介绍了这些及相关主题。这篇综述文章将研讨会报告的要点传达给更广泛的群体。

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