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为什么线虫是如此成功的极端微生物?

Why are nematodes so successful extremophiles?

作者信息

Sapir Amir

机构信息

Faculty of Natural Sciences, University of Haifa, Haifa, Israel.

出版信息

Commun Integr Biol. 2021 Feb 19;14(1):24-26. doi: 10.1080/19420889.2021.1884343.

Abstract

Extreme environments constitute the largest habitat on earth, but our understanding of life in such environments is rudimentary. The hostility of extreme environments such as the deep sea, earth's crust, and toxic lakes limits the sampling, culturing, and studying of extremophiles, the organisms that live in these habitats. Thus, in terms of ecological research, extreme environments are the earth's final frontier. A growing body of data suggests that nematodes are the most common animal taxon in different types of extreme settings such as the deep-subsurface and sediments in the deep sea. Notably, the reasons for the abundance of nematodes in extreme habitats remain mostly unknown. I propose that a unique combination of several characteristics of nematodes may explain, additively or synergistically, their successful adaptation to extreme habitats. Novel functional genetic and genomic approaches are expected to reveal molecular mechanisms of adaptation of nematodes to the many fascinating extreme environments on earth.

摘要

极端环境构成了地球上最大的栖息地,但我们对这类环境中生命的了解还很基础。深海、地壳和有毒湖泊等极端环境的恶劣性限制了对嗜极生物(即生活在这些栖息地的生物)的采样、培养和研究。因此,就生态研究而言,极端环境是地球最后的前沿领域。越来越多的数据表明,线虫是不同类型极端环境(如深海次表层和深海沉积物)中最常见的动物分类群。值得注意的是,线虫在极端栖息地数量丰富的原因大多仍不为人知。我认为,线虫的几个独特特征组合可能会累加或协同地解释它们对极端栖息地的成功适应。新的功能基因和基因组方法有望揭示线虫适应地球上众多迷人极端环境的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6223/7899631/283efd819d03/KCIB_A_1884343_F0001_OC.jpg

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