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解析多物种生物膜中细菌相互作用和空间组织之间的联系。

Deciphering links between bacterial interactions and spatial organization in multispecies biofilms.

机构信息

School of Food and Pharmaceutical engineering, Nanjing Normal University, Nanjing, China.

Section of Microbiology, Department of Biology, University of Copenhagen, Copenhagen, Denmark.

出版信息

ISME J. 2019 Dec;13(12):3054-3066. doi: 10.1038/s41396-019-0494-9. Epub 2019 Aug 27.

Abstract

Environmental microbes frequently live in multispecies biofilms where mutualistic relationships and co-evolution may occur, defining spatial organization for member species and overall community functions. In this context, intrinsic properties emerging from microbial interactions, such as efficient organization optimizing growth and activities in multispecies biofilms, may become the object of fitness selection. However, little is known on the nature of underlying interspecies interactions during establishment of a predictable spatial organization within multispecies biofilms. We present a comparative metatranscriptomic analysis of bacterial strains residing in triple-species and four-species biofilms, aiming at deciphering molecular mechanisms underpinning bacterial interactions responsible of the remarkably enhanced biomass production and associated typical spatial organization they display. Metatranscriptomic profiles concurred with changes in micro-site occupation in response to the addition/removal of a single species, being driven by both cooperation, competition, and facilitation processes. We conclude that the enhanced biomass production of the four-species biofilm is an intrinsic community property emerging from finely tuned space optimization achieved through concerted antagonistic and mutualistic interactions, where each species occupies a defined micro-site favoring its own growth. Our results further illustrate how molecular mechanisms can be better interpreted when supported by visual imaging of actual microscopic spatial organization, and we propose phenotypic adaptation selected by social interactions as molecular mechanisms stabilizing microbial communities.

摘要

环境微生物经常生活在多物种生物膜中,在那里可能会发生互利关系和共同进化,为成员物种定义空间组织和整体社区功能。在这种情况下,从微生物相互作用中出现的内在特性,例如在多物种生物膜中优化生长和活动的高效组织,可能成为适合度选择的对象。然而,对于在多物种生物膜中建立可预测的空间组织过程中,物种间相互作用的性质,我们知之甚少。我们对生活在三物种和四物种生物膜中的细菌菌株进行了比较宏转录组学分析,旨在破译负责显著提高生物量生产的细菌相互作用的分子机制,以及它们所表现出的相关典型空间组织。宏转录组学图谱与微位点占据的变化一致,这是对单个物种的添加/去除的反应,由合作、竞争和促进过程驱动。我们得出的结论是,四物种生物膜中增强的生物量生产是一种内在的群落特性,它源自通过协调的拮抗和互利相互作用实现的精细空间优化,其中每个物种占据一个定义明确的微位点,有利于自身的生长。我们的结果进一步说明了如何在实际微观空间组织的可视化成像的支持下更好地解释分子机制,我们提出了由社会相互作用选择的表型适应作为稳定微生物群落的分子机制。

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