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微生物种间相互作用:互营共生菌群的最新研究发现

Microbial interspecies interactions: recent findings in syntrophic consortia.

作者信息

Kouzuma Atsushi, Kato Souichiro, Watanabe Kazuya

机构信息

School of Life Sciences, Tokyo University of Pharmacy and Life Sciences Tokyo, Japan.

Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology Sapporo, Japan.

出版信息

Front Microbiol. 2015 May 13;6:477. doi: 10.3389/fmicb.2015.00477. eCollection 2015.

Abstract

Microbes are ubiquitous in our biosphere, and inevitably live in communities. They excrete a variety of metabolites and support the growth of other microbes in a community. According to the law of chemical equilibrium, the consumption of excreted metabolites by recipient microbes can accelerate the metabolism of donor microbes. This is the concept of syntrophy, which is a type of mutualism and governs the metabolism and growth of diverse microbes in natural and engineered ecosystems. A representative example of syntrophy is found in methanogenic communities, where reducing equivalents, e.g., hydrogen and formate, transfer between syntrophic partners. Studies have revealed that microbes involved in syntrophy have evolved molecular mechanisms to establish specific partnerships and interspecies communication, resulting in efficient metabolic cooperation. In addition, recent studies have provided evidence suggesting that microbial interspecies transfer of reducing equivalents also occurs as electric current via biotic (e.g., pili) and abiotic (e.g., conductive mineral and carbon particles) electric conduits. In this review, we describe these findings as examples of sophisticated cooperative behavior between different microbial species. We suggest that these interactions have fundamental roles in shaping the structure and activity of microbial communities.

摘要

微生物在我们的生物圈中无处不在,并且不可避免地生活在群落中。它们分泌各种代谢产物,并支持群落中其他微生物的生长。根据化学平衡定律,受体微生物对分泌代谢产物的消耗可以加速供体微生物的新陈代谢。这就是互营共生的概念,它是一种互利共生关系,支配着自然和工程生态系统中各种微生物的代谢和生长。互营共生的一个典型例子存在于产甲烷群落中,在那里,还原当量,如氢气和甲酸,在互营伙伴之间转移。研究表明,参与互营共生的微生物已经进化出分子机制来建立特定的伙伴关系和种间通讯,从而实现高效的代谢合作。此外,最近的研究提供了证据表明,微生物间还原当量的转移也会以电流的形式通过生物(如菌毛)和非生物(如导电矿物和碳颗粒)导电通道发生。在这篇综述中,我们将这些发现描述为不同微生物物种之间复杂合作行为的例子。我们认为这些相互作用在塑造微生物群落的结构和活性方面具有重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79a2/4429618/bee200f3f11c/fmicb-06-00477-g001.jpg

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