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种间相互作用减少了在一个四物种生物膜模型中生物膜优化变体的选择。

Interspecies interactions reduce selection for a biofilm-optimized variant in a four-species biofilm model.

机构信息

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

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

出版信息

Environ Microbiol Rep. 2019 Dec;11(6):835-839. doi: 10.1111/1758-2229.12803. Epub 2019 Nov 14.

Abstract

Multispecies biofilms are structured and spatially defined communities, where interspecies interactions impact assembly and functionality. Here, we compared the spatial organization and growth of bacterial cells in differently composed biofilm communities over time to determine links between interspecies interactions and selection for biofilm phenotypes of individual species. An established model community consisting of Stenotrophomonas rhizophila, Xanthomonas retroflexus, Microbacterium oxydans and Paenibacillus amylolyticus was used. It was found that interspecies interactions led to varying levels of selection for a new colony phenotype of X. retroflexus, depending on the presence/absence of other species. When M. oxydans was absent, X. retroflexus was not able to establish in the top layers of the biofilm, which led to selection for a hyper-matrix forming phenotype of X. retroflexus that successfully established in the biofilm top layers. No such phenotypic X. retroflexus variants were identified in the presence of M. oxydans. These findings indicate that interspecies interactions may lead to favourable localization of individual species in a multispecies biofilm and thereby reduce selection for competitive phenotypes.

摘要

多物种生物膜是具有结构和空间定义的群落,种间相互作用影响着生物膜的组装和功能。在这里,我们比较了不同组成的生物膜群落中细菌细胞随时间的空间组织和生长情况,以确定种间相互作用与个体物种生物膜表型选择之间的联系。使用了一个由 Stenotrophomonas rhizophila、Xanthomonas retroflexus、Microbacterium oxydans 和 Paenibacillus amylolyticus 组成的成熟模型群落。结果发现,种间相互作用导致 X. retroflexus 的新菌落表型的选择程度不同,具体取决于其他物种的存在/缺失。当 M. oxydans 不存在时,X. retroflexus 无法在生物膜的顶层建立,这导致了 X. retroflexus 形成超基质的表型选择,从而成功地在生物膜顶层建立。在存在 M. oxydans 的情况下,没有发现这种表型的 X. retroflexus 变体。这些发现表明,种间相互作用可能导致在多物种生物膜中个体物种的有利定位,从而减少对竞争表型的选择。

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