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Micro-scale intermixing: a requisite for stable and synergistic co-establishment in a four-species biofilm

机译:微尺度混合:四种生物膜中稳定和协同共同建立的必要条件

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Microorganisms frequently coexist in complex multispecies communities, where they distribute non-randomly, reflective of the social interactions that occur. It is therefore important to understand how social interactions and local spatial organization influences multispecies biofilm succession. Here the localization of species pairs was analyzed in three dimensions in a reproducible four-species biofilm model, to study the impact of spatial positioning of individual species on the temporal development of the community. We found, that as the biofilms developed, species pairs exhibited distinct intermixing patterns unique to the four-member biofilms. Higher biomass and more intermixing were found in four-species biofilms compared to biofilms with fewer species. Intriguingly, in local regions within the four member biofilms where Microbacterium oxydans was scant, both biomass and intermixing of all species were lowered, compared to regions where M. oxydans was present at typical densities. Our data suggest that Xanthomonas retroflexus and M. oxydans, both low abundant biofilm-members, intermixed continuously during the development of the four-species biofilm, hereby facilitating their own establishment. In turn, this seems to have promoted distinct spatial organization of Stenotrophomonas rhizophila and Paenibacillus amylolyticus enabling enhanced growth of all four species. Here local intermixing of bacteria advanced the temporal development of a multi-species biofilm.
机译:微生物经常在复杂的多层社区中共存,他们不随意分配,反映出现的社交互动。因此,了解社交互动和地方空间组织如何影响多数生物膜的继承是很重要的。这里,物种对的定位在可重复的四种生物膜模型中分析了三维,以研究个体种类的空间定位对社区的时间发展的影响。我们发现,作为生物膜开发的,物种对表现出四个成员生物膜独特的不同混合模式。与具有较少物种的生物膜相比,在四种生物膜中发现了更高的生物量和更多的混合。有趣的是,在四个成员生物膜内的局部区域中,微生物氧化二叔味道的味道,与典型密度存在的区域相比,所有物种的生物质和混合均降低。我们的数据表明,Xanthomonas Retroflexus和M. oxydans,两种低丰富的生物膜构件,在四种生物膜的开发过程中连续混合,从而促进了自己的建立。反过来,这似乎促进了史胸甲酰胺的明显的空间组织和帕尼布唑胺淀粉氨酸,使得所有四种物种的生长增强。这里的局部混合细菌提出了多种生物膜的时间发育。

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