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Functional properties of bacterial communities in water and sediment of the eutrophic river-lake system of Poyang Lake, China

机译:中国鄱阳湖富养殖河湖系统水中沉积物的功能性质

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摘要

In river-lake systems, sediment and water column are two distinct habitats harboring different bacterial communities which play a crucial role in biogeochemical processes. In this study, we employed Phylogenetic Investigation of Communities by Reconstruction of Unobserved States to assess the potential functions and functional redundancy of the bacterial communities in sediment and water in a eutrophic river-lake ecosystem, Poyang Lake in China. Bacterial communities in sediment and water had distinct potential functions of carbon, nitrogen, and sulfur metabolisms as well as phosphorus cycle, while the differences between rivers and the lake were inconspicuous. Bacterial communities in sediment had a higher relative abundance of genes associated with carbohydrate metabolism, carbon fixation pathways in prokaryotes, methane metabolism, anammox, nitrogen fixation, and dissimilatory sulfate reduction than that of water column. Bacterial communities in water column were higher in lipid metabolism, assimilatory nitrate reduction, dissimilatory nitrate reduction, phosphonate degradation, and assimilatory sulfate reduction than that of sediment bacterial communities. Furthermore, the variations in functional composition were closely associated to the variations in taxonomic composition in both habitats. In general, the bacterial communities in water column had a lower functional redundancy than in sediment. Moreover, comparing to the overall functions, bacterial communities had a lower functional redundancy of nitrogen metabolism and phosphorus cycle in water column and lower functional redundancy of nitrogen metabolism in sediment. Distance-based redundancy analysis and mantel test revealed close correlations between nutrient factors and functional compositions. The results suggested that bacterial communities in this eutrophic river-lake system of Poyang Lake were vulnerable to nutrient perturbations, especially the bacterial communities in water column. The results enriched our understanding of the bacterial communities and major biogeochemical processes in the eutrophic river-lake ecosystems.
机译:在河湖系统中,沉积物和水柱是两种不同的栖息地,含有不同的细菌社区,这在生物地球化学过程中发挥着至关重要的作用。在这项研究中,我们通过改变未观察状态来评估沉积物和水中沉积物和水中的潜在功能和功能冗余,在中国的富养殖河湖生态系统中的潜在功能和功能冗余。沉积物和水中的细菌群落具有碳,氮和硫代谢以及磷循环的不同潜在功能,而河流与湖泊之间的差异不起眼。沉淀物中的细菌群落具有与碳水化合物代谢,原核生物中的碳固定途径,甲烷代谢,厌氧,氮固定和分化硫酸盐降低而相关的相对丰富的基因。水柱中的细菌群落在脂质代谢中较高,硝酸硝酸盐还原,降低硝酸盐还原,膦酸盐降解,以及磺酸盐细菌群落的含糊硫酸盐降低。此外,功能组合物的变化与两种栖息地的分类学组合物的变化密切相关。通常,水柱中的细菌群落具有较低的功能冗余,而不是沉积物。此外,与整体功能相比,细菌群落在水塔中的氮代谢和磷循环具有较低的氮代谢和磷循环和沉积物中氮代谢的较低功能冗余。基于距离的冗余分析和壁炉型试验显示营养因子和功能组合物之间的密切相关性。结果表明,鄱阳湖富营养化的河湖系统中的细菌群体易受养分扰动,特别是水柱中的细菌群落。结果丰富了我们对富营养化河湖生态系统中的细菌群落和主要生物地球化学过程的理解。

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