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溪流生物膜中细菌定殖模式的驱动因素。

Drivers of bacterial colonization patterns in stream biofilms.

机构信息

Department of Freshwater Ecology, University of Vienna, Vienna, Austria.

出版信息

FEMS Microbiol Ecol. 2010 Apr;72(1):47-57. doi: 10.1111/j.1574-6941.2009.00830.x.

Abstract

Dispersal and colonization are important for the assembly and biodiversity of microbial communities. While emigration as the initial step of dispersal has become increasingly understood in model bacterial biofilms, the drivers of dispersal and colonization in complex biofilms remain elusive. We grew complex biofilms in microcosms from natural surface water in laminar and turbulent flow, and investigated dispersal and colonization patterns of fluorescently labeled cells and microbeads in nascent and mature biofilms. Settling occurred in nonrandom spatial patterns governed by the interplay of local flow patterns and biofilm topography. Settling was higher in treatments with nascent biofilms, with fewer cells remaining in the water column than in treatments with mature biofilms. The flow regime had no effect on settling velocity, even though in mature biofilms the formation of streamers under turbulent flow enhanced particle trapping compared with the laminar flow treatment. Hence, small-scale variations in the flow pattern seemed to be more important than the overall flow regime. Furthermore, spatial analysis of the colonizer patterns suggests that bacteria have moved in the biofilm after settling. Our results show that colonization of biofilms in a model stream environment is a heterogeneous process differently affected by biological and physical factors.

摘要

扩散和定植对于微生物群落的组装和生物多样性非常重要。尽管模型细菌生物膜中迁移作为扩散的初始步骤已经越来越被理解,但复杂生物膜中扩散和定植的驱动因素仍然难以捉摸。我们在层流和湍流中的微宇宙中从天然地表水生长复杂的生物膜,并研究了荧光标记细胞和微珠在新生和成熟生物膜中的扩散和定植模式。沉降发生在由局部流动模式和生物膜地形相互作用控制的非随机空间模式中。在有新生生物膜的处理中沉降率更高,留在水柱中的细胞比在有成熟生物膜的处理中少。流动状态对沉降速度没有影响,尽管在成熟生物膜中,紊流下形成的射流比层流处理更能增强颗粒捕获。因此,流动模式的小规模变化似乎比整体流动状态更为重要。此外,定植模式的空间分析表明,细菌在沉降后在生物膜中移动。我们的结果表明,模型溪流环境中生物膜的定植是一个受生物和物理因素不同影响的异质过程。

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