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热液生态系统中微生物生命的系统发育视角,过去与现在。

Phylogenetic perspective on microbial life in hydrothermal ecosystems, past and present.

作者信息

Barns S M, Delwiche C F, Palmer J D, Dawson S C, Hershberger K L, Pace N R

机构信息

Department of Biology, Indiana University, Bloomington 47405, USA.

出版信息

Ciba Found Symp. 1996;202:24-32; discussion 32-9. doi: 10.1002/9780470514986.ch2.

Abstract

Understanding hydrothermal ecosystems, both past and present, requires basic information on the types of organisms present. Traditional methods, which require cultivation of microorganisms, fail to detect many taxa. We have used phylogenetic analyses of small subunit rRNA sequences obtained from microorganisms of a hot spring in Yellowstone National Park to explore the archael (archaebacterial) diversity present. Analysis of these sequences reveals several novel groups of archaea, greatly expanding our conception of the diversity of high temperature microorganisms, and demonstrating that hydrothermal systems harbour a rich variety of life. Many of these groups diverged from the archael line of descent early during evolution, and an understanding of their common properties may assist in inference of the nature of the last common ancestor of all life. The data also show a specific relationship between low-temperature marine archaea and some hot spring archaea, consistent with a thermophilic origin of life. Future use of rRNA-sequence-based techniques in exploration of hydrothermal systems should greatly facilitate study of modern thermophiles and give us insight into the activities of extinct communities as well.

摘要

了解过去和现在的热液生态系统,需要掌握有关现存生物种类的基本信息。传统方法需要培养微生物,因而无法检测到许多分类单元。我们利用从黄石国家公园温泉微生物中获取的小亚基rRNA序列进行系统发育分析,以探索其中存在的古菌多样性。对这些序列的分析揭示了几个新的古菌类群,极大地扩展了我们对高温微生物多样性的认识,并表明热液系统中蕴藏着丰富多样的生命形式。这些类群中的许多在进化早期就从古菌谱系中分化出来,了解它们的共同特性可能有助于推断所有生命最后一个共同祖先的性质。数据还显示了低温海洋古菌与一些温泉古菌之间的特定关系,这与生命起源于嗜热环境的观点一致。未来基于rRNA序列的技术在热液系统探索中的应用,应能极大地促进对现代嗜热微生物的研究,并让我们深入了解已灭绝群落的活动情况。

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