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探索低压环境中的微生物活性。

Exploring Microbial Activity in Low-pressure Environments.

机构信息

University of Florida, 505 Odyssey Way, Space Life Sciences Lab, Exploration Park, Merritt Island, FL 32953, USA.

出版信息

Curr Issues Mol Biol. 2020;38:163-196. doi: 10.21775/cimb.038.163. Epub 2020 Jan 22.

Abstract

The importance of hypopiezophilic and hypopiezotolerant microorganisms (i.e., life that grows at low atmospheric pressures; see section 2) in the field of astrobiology cannot be overstated. The ability to reproduce and thrive at Martian atmospheric pressure (0.2 to 1.2 kPa) is of high importance to both modeling the forward contamination of its planetary surface and predicting the habitability of Mars. On Earth, microbial growth at low pressure also has implications for the dissemination of microorganisms within clouds or the bulk atmosphere. Yet our ability to understand the effect of low pressure on microbial metabolism, growth, cellular structure and integrity, and adaptation is still limited. We present current knowledge on hypopiezophilic and hypopiezotolerant microorganisms, methods for isolation and cultivation, justify why there should be more focus for future research, and discuss their importance for astrobiology.

摘要

在天体生物学领域,低气压嗜压微生物(即在低气压环境下生长的生命;见第 2 节)的重要性怎么强调都不为过。在火星大气压力(0.2 到 1.2 千帕)下繁殖和茁壮成长的能力对于模拟其行星表面的正向污染和预测火星的可居住性都非常重要。在地球上,微生物在低压下的生长也会影响微生物在云层或整个大气中的传播。然而,我们对低压对微生物代谢、生长、细胞结构和完整性以及适应性的影响的理解仍然有限。我们介绍了当前关于低气压嗜压微生物的知识,包括分离和培养方法,说明为什么应该更加关注未来的研究,并讨论它们对天体生物学的重要性。

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