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在大西洋中脊西侧下方循环的冷氧化流体中,存在一个独特且活跃的细菌群落。

A distinct and active bacterial community in cold oxygenated fluids circulating beneath the western flank of the Mid-Atlantic ridge.

作者信息

Meyer Julie L, Jaekel Ulrike, Tully Benjamin J, Glazer Brian T, Wheat C Geoffrey, Lin Huei-Ting, Hsieh Chih-Chiang, Cowen James P, Hulme Samuel M, Girguis Peter R, Huber Julie A

机构信息

Josephine Bay Paul Center, Marine Biological Laboratory, 7 MBL St., Woods Hole, MA 02543.

Department of Organismic and Evolutionary Biology, Harvard University, 16 Divinity Ave., Cambridge, MA 02138.

出版信息

Sci Rep. 2016 Mar 3;6:22541. doi: 10.1038/srep22541.

Abstract

The rock-hosted, oceanic crustal aquifer is one of the largest ecosystems on Earth, yet little is known about its indigenous microorganisms. Here we provide the first phylogenetic and functional description of an active microbial community residing in the cold oxic crustal aquifer. Using subseafloor observatories, we recovered crustal fluids and found that the geochemical composition is similar to bottom seawater, as are cell abundances. However, based on relative abundances and functional potential of key bacterial groups, the crustal fluid microbial community is heterogeneous and markedly distinct from seawater. Potential rates of autotrophy and heterotrophy in the crust exceeded those of seawater, especially at elevated temperatures (25 °C) and deeper in the crust. Together, these results reveal an active, distinct, and diverse bacterial community engaged in both heterotrophy and autotrophy in the oxygenated crustal aquifer, providing key insight into the role of microbial communities in the ubiquitous cold dark subseafloor biosphere.

摘要

以岩石为宿主的大洋地壳含水层是地球上最大的生态系统之一,但对其原生微生物却知之甚少。在此,我们首次对活跃于冷氧化地壳含水层中的微生物群落进行了系统发育和功能描述。利用海底观测站,我们采集到了地壳流体,发现其地球化学组成与底层海水相似,细胞丰度也是如此。然而,基于关键细菌类群的相对丰度和功能潜力,地壳流体微生物群落具有异质性,且与海水明显不同。地壳中自养和异养的潜在速率超过了海水,特别是在较高温度(25°C)和地壳较深处。这些结果共同揭示了一个活跃、独特且多样的细菌群落,它们在含氧的地壳含水层中既进行异养又进行自养,为深入了解微生物群落在普遍存在的寒冷黑暗海底生物圈中的作用提供了关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d858/4776111/21bc0739bad0/srep22541-f1.jpg

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