水力学
生态学
河流生态系统
河流
生物多样性
生态系统
漫滩
生物膜
营养水平
生物
系统发育多样性
溪流
环境科学
系统发育树
细菌
古生物学
构造盆地
航空航天工程
工程类
基因
生物化学
计算机科学
计算机网络
作者
Robert Niederdorfer,Hannes Peter,Tom J. Battin
标识
DOI:10.1038/nmicrobiol.2016.178
摘要
Small-scale hydraulics affects microbial behaviour at the cell level1, trophic interactions in marine aggregates2 and the physical structure and function of stream biofilms3,4. However, it remains unclear how hydraulics, predictably changing from small streams to large rivers, impacts the structure and biodiversity of complex microbial communities in these ecosystems. Here, we present experimental evidence unveiling hydraulics as a hitherto poorly recognized control of microbial lifestyle differentiation in fluvial ecosystems. Exposing planktonic source communities from stream and floodplain ecosystems to different hydraulic environments revealed strong selective hydraulic pressures but only minor founder effects on the differentiation of attached biofilms and suspended aggregates and their biodiversity dynamics. Key taxa with a coherent phylogenetic underpinning drove this differentiation. Only a few resident and phylogenetically related taxa formed the backbone of biofilm communities, whereas numerous resident taxa characterized aggregate communities. Our findings unveil fundamental differences between biofilms and aggregates and build the basis for a mechanistic understanding of how hydraulics drives the distribution of microbial diversity along the fluvial continuum5–7. Hydraulic conditions result in selective taxonomic pressures that determine the formation of biofilm or aggregate communities in experimental fluvial systems.
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