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Modelling the effects of dispersal mechanisms and hydrodynamic regimes upon the structure of microbial communities within fluvial biofilms

机译:模拟河流生物膜内微生物扩散结构和水动力机制对微生物群落结构的影响

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摘要

The spatial distribution of microbial taxa is determined primarily by physical and chemical environments and by dispersal. In a homogeneous landscape with limited dispersal, the similarity in abundance of taxa in samples declines with separation distance. We present a one-dimensional model for the spatial autocorrelation in abundances arising from immigration from some remote community and dispersal between environmentally similar landscape patches. Spatial correlation in taxa abundances were calculated from biofilms from the beds of two flumes which differed only in their bedform profiles; one flat and the other a periodic sawtooth shape. The hydraulic regime is approximately uniform over the flat bed, whereas the sawtooth induces fast flow over the peaks and recirculation in the troughs. On the flat bed, the correlation decline between samples was reproduced by a model using one biologically reasonable parameter. A decline was apparent in the other flume; however, a better fit was achieved when dispersal was not assumed constant everywhere. However, analysis of finer-resolution data for the heterogeneous flume suggested even this model did not adequately capture the community's complexity. We conclude that hydrodynamics are a strong driver of taxa-abundance patterns in stream biofilms. However, local adaptability must also be considered to build up a complete mechanistic model.
机译:微生物分类群的空间分布主要由物理和化学环境以及扩散决定。在具有有限散布的均匀景观中,样品中分类单元的丰度相似度随分离距离而降低。我们提出了一维模型,用于从一些偏远社区的移民以及环境相似的景观斑块之间的分散所引起的丰度中的空间自相关。从两个水槽的床底的生物膜上计算出生物分类丰度的空间相关性,只是它们的床型不同。一个平面,另一个为周期性锯齿形状。平台上的水力状态大致均匀,而锯齿形的波峰会引起快速流动,并在波谷中产生再循环。在平板上,使用一个生物学上合理的参数通过模型再现样本之间的相关性下降。其他水槽明显下降。然而,当分散不是在每个地方都保持恒定时,将获得更好的拟合度。但是,对异构水槽的更高分辨率数据的分析表明,即使该模型也无法充分反映社区的复杂性。我们得出的结论是,流体动力学是河流生物膜中生物分类丰度模式的强大驱动力。但是,还必须考虑局部适应性以建立完整的机械模型。

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