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Spatial Patterns in Biofilm Diversity across Hierarchical Levels of River-Floodplain Landscapes

机译:河流漫滩景观分层层次上生物膜多样性的空间格局

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摘要

River-floodplain systems are among the most diverse and productive ecosystems, but the effects of biophysical complexity at multiple scales on microbial biodiversity have not been studied. Here, we investigated how the hierarchical organization of river systems (i.e., region, floodplain, zone, habitats, and microhabitats) influences epilithic biofilm community assemblage patterns by characterizing microbial communities using 16S rRNA gene sequence data and analyzing bacterial species distribution across local and regional scales. Results indicate that regional and local environmental filters concurrently sort bacterial species, suggesting that spatial configuration of epilithic biofilms resembles patterns of larger organisms in floodplain ecosystems. Along the hierarchical organization of fluvial systems, floodplains constitute a vector of maximum environmental heterogeneity and consequently act as a major landscape filter for biofilm species. Thus, river basins and associated floodplains may simply reflect very large scale ‘patches’ within which environmental conditions select for community composition of epilithic biofilms.
机译:河漫滩系统是最多样化和生产力最高的生态系统之一,但尚未研究多种规模的生物物理复杂性对微生物多样性的影响。在这里,我们研究了河流系统的分层组织(即区域,洪泛平原,区域,栖息地和微生境)如何通过使用16S rRNA基因序列数据表征微生物群落并分析整个地方和区域的细菌物种分布,从而影响上石生物膜群落模式。秤。结果表明,区域和地方环境过滤器同时对细菌种类进行分类,表明上石器质生物膜的空间结构类似于洪泛区生态系统中较大生物的模式。沿着河流系统的分层组织,洪泛区构成了最大程度的环境异质性的载体,因此成为生物膜物种的主要景观过滤器。因此,流域和相关的洪泛区可能只是反映了大规模的“斑块”,在这些斑块中环境条件选择了上石器时代生物膜的群落组成。

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