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首页> 外文期刊>Environmental microbiology >Biophysical controls on cluster dynamics and architectural differentiation of microbial biofilms in contrasting flow environments
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Biophysical controls on cluster dynamics and architectural differentiation of microbial biofilms in contrasting flow environments

机译:在不同流动环境中对微生物生物膜的簇动力学和结构分化的生物物理控制

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摘要

Ecology, with a traditional focus on plants and animals, seeks to understand the mechanisms underlying structure and dynamics of communities. In microbial ecology, the focus is changing from planktonic communities to attached biofilms that dominate microbial life in numerous systems. Therefore, interest in the structure and function of biofilms is on the rise. Biofilms can form reproducible physical structures (i.e. architecture) at the millimetre-scale, which are central to their functioning. However, the spatial dynamics of the clusters conferring physical structure to biofilms remains often elusive. By experimenting with complex microbial communities forming biofilms in contrasting hydrodynamic microenvironments in stream mesocosms, we show that morphogenesis results in ‘ripple-like’ and ‘starlike’ architectures – as they have also been reported from monospecies bacterial biofilms, for instance. To explore the potential contribution of demographic processes to these architectures, we propose a sizestructured population model to simulate the dynamics of biofilm growth and cluster size distribution. Our findings establish that basic physical and demographic processes are key forces that shape apparently universal biofilm architectures as they occur in diverse microbial but also in single-species bacterial biofilms.
机译:传统上以植物和动物为重点的生态学试图理解社区结构和动力的机制。在微生物生态学中,重点从浮游生物群落变为附着在许多系统中控制微生物生命的生物膜。因此,对生物膜的结构和功能的兴趣正在上升。生物膜可以形成毫米级的可复制物理结构(即建筑),这是其功能的核心。然而,赋予生物膜物理结构的簇的空间动力学通常仍然难以捉摸。通过与形成流膜的流体动力学微环境形成对比的复杂微生物群落形成生物膜的实验,我们表明形态发生会导致“波纹状”和“星状”结构,例如单物种细菌生物膜也曾报道过这种形态。为了探索人口统计学过程对这些体系结构的潜在贡献,我们提出了一个大小结构化的种群模型,以模拟生物膜生长和簇大小分布的动力学。我们的发现表明,基本的物理和人口统计过程是塑造显然通用的生物膜结构的关键力量,因为它们存在于各种微生物中,也存在于单一物种的细菌生物膜中。

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