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麦哲伦海山区美狄亚深海盐湖中的微生物生命。

Microbial life in the Lake Medee, the largest deep-sea salt-saturated formation.

机构信息

1] Institute for Coastal Marine Environment, CNR, Spianata S.Raineri 86, 98122 Messina, Italy [2].

1] Department of Molecular and Cellular Pharmacology, University of Miami Miller School of Medicine, Miami, FL 33136 [2].

出版信息

Sci Rep. 2013 Dec 19;3:3554. doi: 10.1038/srep03554.

Abstract

Deep-sea hypersaline anoxic lakes (DHALs) of the Eastern Mediterranean represent some of the most hostile environments on our planet. We investigated microbial life in the recently discovered Lake Medee, the largest DHAL found to-date. Medee has two unique features: a complex geobiochemical stratification and an absence of chemolithoautotrophic Epsilonproteobacteria, which usually play the primary role in dark bicarbonate assimilation in DHALs interfaces. Presumably because of these features, Medee is less productive and exhibits reduced diversity of autochthonous prokaryotes in its interior. Indeed, the brine community almost exclusively consists of the members of euryarchaeal MSBL1 and bacterial KB1 candidate divisions. Our experiments utilizing cultivation and [(14)C]-assimilation, showed that these organisms at least partially rely on reductive cleavage of osmoprotectant glycine betaine and are engaged in trophic cooperation. These findings provide novel insights into how prokaryotic communities can adapt to salt-saturated conditions and sustain active metabolism at the thermodynamic edge of life.

摘要

地中海东部的深海高盐缺氧湖 (DHALs) 代表了我们星球上一些最恶劣的环境。我们研究了最近发现的梅迪湖 (Lake Medee) 中的微生物生命,这是迄今为止发现的最大的 DHAL。梅迪湖有两个独特的特征:复杂的地球生物化学分层和缺乏化能自养的 ε 变形菌,它们通常在 DHAL 界面的暗碳酸氢盐同化中起主要作用。据推测,由于这些特征,梅迪湖的生产力较低,内部自生原核生物的多样性减少。事实上,盐水群落几乎完全由广古菌 MSBL1 和细菌 KB1 候选门的成员组成。我们利用培养和 [(14)C]-同化的实验表明,这些生物体至少部分依赖于渗透压保护剂甘氨酸甜菜碱的还原裂解,并参与营养合作。这些发现为原核生物群落如何适应盐饱和条件以及在生命热力学边缘维持活跃代谢提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21e3/3867751/c3ad4b0c4eef/srep03554-f1.jpg

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