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Bacteria and diatom co-occurrence patterns in microbial mats from polar desert streams

机译:极地沙漠水流微生物垫中细菌和硅藻的共存模式

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摘要

The ephemeral stream habitats of the McMurdo Dry Valleys of Antarctica support desiccation and freeze-tolerant microbial mats that are hot spots of primary productivity in an otherwise inhospitable environment. The ecological processes that structure bacterial communities in this harsh environment are not known; however, insights from diatom community ecology may prove to be informative. We examined the relationships between diatoms and bacteria at the community and taxon levels. The diversity and community structure of stream microbial mats were characterized using high-throughput pyrosequencing for bacteria and morphological identification for diatoms. We found significant relationships between diatom communities and the communities of cyanobacteria and heterotrophic bacteria, and co-occurrence analysis identified numerous correlations between the relative abundances of individual diatom and bacterial taxa, which may result from species interactions. Additionally, the strength of correlations between heterotrophic bacteria and diatoms varied along a hydrologic gradient, indicating that flow regime may influence the overall community structure. Phylogenetic consistency in the co-occurrence patterns suggests that the associations are ecologically relevant. Despite these community- and taxon-level relationships, diatom and bacterial alpha diversity were inversely correlated, which may highlight a fundamental difference between the processes that influence bacterial and diatom community assembly in these streams. Our results therefore demonstrate that the relationships between diatoms and bacteria are complex and may result from species interactions as well as niche-specific processes.
机译:南极麦克默多干谷的短暂河流栖息地支持干燥和耐冻微生物垫,这在原本不宜居住的环境中是主要生产力的热点。在这种恶劣环境中构成细菌群落的生态过程尚不清楚。但是,硅藻群落生态学的见解可能被证明是有益的。我们研究了硅藻和细菌在社区和分类群水平之间的关系。使用高通量焦磷酸测序细菌和硅藻的形态鉴定来表征流微生物垫的多样性和群落结构。我们发现硅藻群落与蓝细菌和异养细菌群落之间存在重要关系,并且共现分析确定了个体硅藻和细菌类群相对丰度之间的许多相关性,这可能是由于物种相互作用所致。此外,异养细菌和硅藻之间的相关强度沿水文梯度变化,表明流动方式可能影响整体群落结构。共生模式的系统发育一致性表明,这种关联是生态相关的。尽管存在这些群落和分类单元水平的关系,但硅藻和细菌的α多样性却呈负相关,这可能突显了影响这些河流中细菌和硅藻群落组装的过程之间的根本差异。因此,我们的结果表明,硅藻与细菌之间的关系很复杂,可能是由于物种相互作用以及特定生态位过程所致。

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