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Phylogenetic shifts of bacterioplankton community composition along the Pearl Estuary: the potential impact of hypoxia and nutrients

机译:珠江口浮游植物群落组成的系统发生变化:缺氧和营养物质的潜在影响

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摘要

The significance of salinity in shaping bacterial communities dwelling in estuarine areas has been well documented. However, the influences of other environmental factors such as dissolved oxygen and nutrients in determining distribution patterns of both individual taxa and bacterial communities inhabited local estuarine regions remain elusive. Here, bacterioplankton community structures of surface and bottom waters from eight sites along the Pearl Estuary were characterized with 16S rRNA gene pyrosequencing. The results showed significant differences of bacterioplankton community between freshwater and saltwater sites, and further between surface and bottom waters of saltwater sites. Synechococcus dominated the surface water of saltwater sites while Oceanospirillales, SAR11 and SAR406 were prevalent in the bottom water. Betaproteobacteria was abundant in freshwater sites, with no significant difference between water layers. Occurrence of phylogenetic shifts in taxa affiliated to the same clade was also detected. Dissolved oxygen explained most of the bacterial community variation in the redundancy analysis targeting only freshwater sites, whereas nutrients and salinity explained most of the variation across all samples in the Pearl Estuary. Methylophilales (mainly PE2 clade) was positively correlated to dissolved oxygen, whereas Rhodocyclales (mainly R.12up clade) was negatively correlated. Moreover, high nutrient inputs to the freshwater area of the Pearl Estuary have shifted the bacterial communities toward copiotrophic groups, such as Sphingomonadales. The present study demonstrated that the overall nutrients and freshwater hypoxia play important roles in determining bacterioplankton compositions and provided insights into the potential ecological roles of specific taxa in estuarine environments.
机译:盐度对塑造河口地区细菌群落的重要性已得到充分证明。但是,其他环境因素(例如溶解氧和养分)对确定居住在当地河口地区的个体分类群和细菌群落的分布方式的影响仍然难以捉摸。在这里,利用16S rRNA基因焦磷酸测序对珍珠河口沿岸八个位置的地表和底部浮游细菌群落结构进行了表征。结果表明,淡水和咸水位点之间,以及咸水和淡水位点之间的浮游细菌群落差异显着。咸水域的地表水主要由Synechococcus引起,而底水中普遍存在大洋螺菌,SAR11和SAR406。 Betaproteobacteria细菌在淡水站点丰富,水层之间无显着差异。还检测到与同一进化枝相关的类群发生系统发生变化的情况。溶解氧解释了仅针对淡水位置的冗余分析中大多数细菌群落的变化,而养分和盐度解释了珍珠河口所有样品中的大多数变化。嗜甲基菌(主要是PE2进化枝)与溶解氧呈正相关,而红景天(主要是R.12up进化枝)呈负相关。此外,珍珠河口淡水区的高营养投入使细菌群落向营养型群体(如鞘氨醇单胞菌)转移。本研究表明,总体营养素和淡水缺氧在确定浮游细菌组成方面起着重要作用,并提供了对河口环境中特定分类群潜在生态作用的认识。

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