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Phylogenetic and structural response of heterotrophic bacteria to dissolved organic matter of different chemical composition in a continuous culture study

机译:连续培养研究异养细菌对不同化学组成的溶解有机物的系统发生和结构反应

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Dissolved organic matter (DOM) and heterotrophic bacteria are highly diverse components of the ocean system, and their interactions are key in regulating the biogeochemical cycles of major elements. How chemical and phylogenetic diversity are linked remains largely unexplored to date. To investigate interactions between bacterial diversity and DOM, we followed the response of natural bacterial communities to two sources of phytoplankton-derived DOM over six bacterial generation times in continuous cultures. Analyses of total hydrolysable neutral sugars and amino acids, and ultrahigh resolution mass spectrometry revealed large differences in the chemical composition of the two DOM sources. According to 454 pyrosequences of 16S ribosomal ribonucleic acid genes, diatom-derived DOM sustained higher levels of bacterial richness, evenness and phylogenetic diversity than cyanobacteria-derived DOM. These distinct community structures were, however, not associated with specific taxa. Grazing pressure affected bacterial community composition without changing the overall pattern of bacterial diversity levels set by DOM. Our results demonstrate that resource composition can shape several facets of bacterial diversity without influencing the phylogenetic composition of bacterial communities, suggesting functional redundancy at different taxonomic levels for the degradation of phytoplankton-derived DOM.
机译:溶解有机物(DOM)和异养细菌是海洋系统的高度多样化组成部分,它们之间的相互作用对于调节主要元素的生物地球化学循环至关重要。迄今为止,化学和系统发育多样性之间如何联系的方式仍很不成熟。为了研究细菌多样性与DOM之间的相互作用,我们在连续培养的六个细菌世代时间内,跟踪了自然细菌群落对浮游植物来源的DOM的两种来源的反应。对总可水解中性糖和氨基酸的分析以及超高分辨率质谱分析表明,两种DOM来源的化学成分存在很大差异。根据454个16S核糖体核糖核酸基因的焦磷酸序列,硅藻来源的DOM比蓝细菌来源的DOM维持更高水平的细菌丰富性,均匀性和系统发育多样性。但是,这些独特的社区结构与特定的分类群无关。放牧压力会影响细菌群落组成,而不会改变DOM设定的细菌多样性水平的总体格局。我们的结果表明,资源组成可以塑造细菌多样性的多个方面,而不会影响细菌群落的系统发育组成,这表明在不同分类学水平下功能性冗余对于浮游植物衍生的DOM的降解。

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