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利用实验策略来捕捉微生物相互作用的不同维度。

Leveraging Experimental Strategies to Capture Different Dimensions of Microbial Interactions.

作者信息

Gupta Gunjan, Ndiaye Amadou, Filteau Marie

机构信息

Département des Sciences des aliments, Université Laval, Québec, QC, Canada.

Institut sur la Nutrition et les Aliments Fonctionnels (INAF), Québec, QC, Canada.

出版信息

Front Microbiol. 2021 Sep 27;12:700752. doi: 10.3389/fmicb.2021.700752. eCollection 2021.

Abstract

Microorganisms are a fundamental part of virtually every ecosystem on earth. Understanding how collectively they interact, assemble, and function as communities has become a prevalent topic both in fundamental and applied research. Owing to multiple advances in technology, answering questions at the microbial system or network level is now within our grasp. To map and characterize microbial interaction networks, numerous computational approaches have been developed; however, experimentally validating microbial interactions is no trivial task. Microbial interactions are context-dependent, and their complex nature can result in an array of outcomes, not only in terms of fitness or growth, but also in other relevant functions and phenotypes. Thus, approaches to experimentally capture microbial interactions involve a combination of culture methods and phenotypic or functional characterization methods. Here, through our perspective of food microbiologists, we highlight the breadth of innovative and promising experimental strategies for their potential to capture the different dimensions of microbial interactions and their high-throughput application to answer the question; are microbial interaction patterns or network architecture similar along different contextual scales? We further discuss the experimental approaches used to build various types of networks and study their architecture in the context of cell biology and how they translate at the level of microbial ecosystem.

摘要

微生物实际上是地球上每个生态系统的基本组成部分。了解它们如何作为群落进行集体相互作用、聚集和发挥功能,已成为基础研究和应用研究中的一个普遍话题。由于技术的多项进步,现在我们能够回答微生物系统或网络层面的问题。为了绘制和表征微生物相互作用网络,已经开发了许多计算方法;然而,通过实验验证微生物相互作用并非易事。微生物相互作用取决于环境,其复杂的性质不仅会在适应性或生长方面,还会在其他相关功能和表型方面导致一系列结果。因此,通过实验捕捉微生物相互作用的方法涉及培养方法与表型或功能表征方法的结合。在这里,我们从食品微生物学家的角度出发,强调了创新且有前景的实验策略的广度,这些策略有潜力捕捉微生物相互作用的不同维度,并通过高通量应用来回答以下问题:微生物相互作用模式或网络架构在不同的环境尺度上是否相似?我们还将进一步讨论用于构建各种类型网络并在细胞生物学背景下研究其架构的实验方法,以及它们如何在微生物生态系统层面进行转化。

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