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基于细胞外D-氨基酸产生的细菌竞争试验

Bacterial Competition Assay Based on Extracellular D-amino Acid Production.

作者信息

Alvarez Laura, Cava Felipe

机构信息

Department of Molecular Biology and Laboratory for Molecular Infection Medicine Sweden, Umeå Centre for Microbial Research, Umeå University, Umeå, Sweden.

出版信息

Bio Protoc. 2018 Apr 5;8(7):e2787. doi: 10.21769/BioProtoc.2787.

DOI:10.21769/BioProtoc.2787
PMID:34286010
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8275316/
Abstract

Bacteria live in polymicrobial communities under tough competition. To persist in a specific niche many species produce toxic extracellular effectors as a strategy to interfere with the growth of nearby microbes. One of such effectors are the non-canonical D-amino acids. Here we describe a method to test the effect of D-amino acid production in fitness/survival of bacterial subpopulations within a community. Co-cultivation methods usually involve the growth of the competing bacteria in the same container. Therefore, within such mixed cultures the effect on growth caused by extracellular metabolites cannot be distinguished from direct physical interactions between species (, T6SS effectors). However, this problem can be easily solved by using a filtration unit that allows free diffusion of small metabolites, like L- and D-amino acids, while keeping the different subpopulations in independent compartments. With this method, we have demonstrated that D-arginine is a bactericide effector produced by , which strongly influences survival of diverse microbial subpopulations. Moreover, D-arginine can be used as a cooperative instrument in mixed communities to protect non-producing members from competing bacteria.

摘要

细菌生活在竞争激烈的多微生物群落中。为了在特定生态位中生存,许多物种会产生有毒的细胞外效应物,作为干扰附近微生物生长的一种策略。其中一种效应物是非经典D-氨基酸。在这里,我们描述了一种测试D-氨基酸产生对群落中细菌亚群适应性/生存能力影响的方法。共培养方法通常涉及在同一容器中培养竞争细菌。因此,在这种混合培养物中,细胞外代谢物对生长的影响无法与物种之间的直接物理相互作用(如T6SS效应物)区分开来。然而,这个问题可以通过使用一个过滤单元轻松解决,该单元允许小代谢物(如L-和D-氨基酸)自由扩散,同时将不同的亚群保持在独立的隔室中。通过这种方法,我们证明了D-精氨酸是由 产生的一种杀菌效应物,它强烈影响不同微生物亚群的生存。此外,D-精氨酸可以在混合群落中用作一种协同工具,以保护不产生D-精氨酸的成员免受竞争细菌的侵害。