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量化微生物活性:细胞与循环之间的联系

Quantifying Microbial Activity : the Link between Cells and Cycles.

作者信息

Dekas Anne E

机构信息

Earth System Science Department, Stanford University, Stanford, California, USA.

出版信息

mSystems. 2021 Aug 31:e0075821. doi: 10.1128/mSystems.00758-21.

Abstract

Metagenomic sequencing of environmental samples has dramatically expanded our knowledge of microbial taxonomic and metabolic diversity and suggests metabolic interdependence is widespread. However, translating these insights into knowledge of ecosystem function and, therefore, implications for local and global chemistry, remains a challenge. In this commentary, I argue that making direct measurements of microbial activity is an essential step to confirm gene-based hypotheses of microbial physiology and bridge advances in microbial ecology with a predicative understanding of global chemistry and climate. Making these measurements across a range of spatial scales and experimentally manipulated conditions contributes to a process-based understanding and, therefore, more robust predictions of how activity will respond to changing environmental conditions. I discuss recent advancements in quantifying microbial activity and highlight several lines of research in marine microbiology that leverage complementary genomic and isotopic methods to connect microbes and global chemistry.

摘要

环境样本的宏基因组测序极大地拓展了我们对微生物分类和代谢多样性的认识,并表明代谢相互依存关系广泛存在。然而,将这些见解转化为对生态系统功能的认识,进而转化为对局部和全球化学的影响,仍然是一项挑战。在这篇评论中,我认为直接测量微生物活性是确认基于基因的微生物生理学假设,并将微生物生态学的进展与对全球化学和气候的预测性理解相联系的关键一步。在一系列空间尺度和实验控制条件下进行这些测量,有助于形成基于过程的理解,从而更有力地预测活性将如何响应不断变化的环境条件。我讨论了量化微生物活性的最新进展,并强调了海洋微生物学中的几条研究路线,这些路线利用互补的基因组和同位素方法来连接微生物与全球化学。

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