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海底的慢速微生物生命。

Slow Microbial Life in the Seabed.

机构信息

Center for Geomicrobiology, Department of Bioscience, Aarhus University, 8000 Aarhus C, Denmark; email:

出版信息

Ann Rev Mar Sci. 2016;8:311-32. doi: 10.1146/annurev-marine-010814-015535. Epub 2015 Jul 22.

Abstract

Global microbial cell numbers in the seabed exceed those in the overlying water column, yet these organisms receive less than 1% of the energy fixed as organic matter in the ocean. The microorganisms of this marine deep biosphere subsist as stable and diverse communities with extremely low energy availability. Growth is exceedingly slow, possibly regulated by virus-induced mortality, and the mean generation times are tens to thousands of years. Intermediate substrates such as acetate are maintained at low micromolar concentrations, yet their turnover time may be several hundred years. Owing to slow growth, a cell community may go through only 10,000 generations from the time it is buried beneath the mixed surface layer until it reaches a depth of tens of meters several million years later. We discuss the efficiency of the energy-conserving machinery of subsurface microorganisms and how they may minimize energy consumption through necessary maintenance, repair, and growth.

摘要

海底的微生物细胞数量超过了上层水柱中的数量,但这些生物获得的能量不到海洋中固定有机物的 1%。这些海洋深层生物界的微生物以稳定而多样的群落形式存在,能量供应极低。它们的生长极其缓慢,可能受到病毒诱导的死亡率的调节,平均世代时间为数十年到数千年。中间底物(如乙酸盐)保持在低微摩尔浓度,但它们的周转时间可能是几百年。由于生长缓慢,从一个细胞群落被埋在混合表层下的那一刻起,到几百万年后到达数十米深的地方,它可能只经历了 1 万代。我们讨论了地下微生物节能机制的效率,以及它们如何通过必要的维护、修复和生长来最小化能量消耗。

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