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Responses of spatial-temporal dynamics of bacterioplankton community to large-scale reservoir operation: a case study in the Three Gorges Reservoir China

机译:浮游植物群落的时空动态对大型水库运行的响应:以中国三峡水库为例

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摘要

Large rivers are commonly regulated by damming, yet the effects of such disruption on bacterioplankton community structures have not been adequately studied. The aim of this study was to explore the biogeographical patterns present under dam regulation and to uncover the major drivers structuring bacterioplankton communities. Bacterioplankton assemblages in the Three Gorges Reservoir (TGR) were analyzed using Illumina Miseq sequencing by comparing seven sites located within the TGR before and after impoundment. This approach revealed ecological and spatial-temporal variations in bacterioplankton community composition along the longitudinal axis. The community was dynamic and dominated by Proteobacteria and Actinobacteria phyla, encompassing 39.26% and 37.14% of all sequences, respectively, followed by Bacteroidetes (8.67%) and Cyanobacteria (3.90%). The Shannon-Wiener index of the bacterioplankton community in the flood season (August) was generally higher than that in the impoundment season (November). Principal Component Analysis of the bacterioplankton community compositions showed separation between different seasons and sampling sites. Results of the relationship between bacterioplankton community compositions and environmental variables highlighted that ecological processes of element cycling and large dam disturbances are of prime importance in driving the assemblages of riverine bacterioplankton communities.
机译:大型河流通常通过筑坝来调节,但这种破坏对浮游生物群落结构的影响尚未得到充分研究。这项研究的目的是探索大坝监管下存在的生物地理格局,并发现构成浮游细菌群落的主要驱动力。使用Illumina Miseq测序方法,通过比较蓄水前后位于TGR内的七个位点,分析了三峡水库(TGR)中的浮游细菌群。这种方法揭示了沿纵轴的浮游生物群落组成的生态和时空变化。群落是动态的,并以变形杆菌和放线菌为主导,分别占所有序列的39.26%和37.14%,其次是拟杆菌(8.67%)和蓝细菌(3.90%)。洪水季节(8月)的浮游细菌群落的香农-维纳指数通常高于蓄水季节(11月)。浮游细菌群落组成的主成分分析表明,不同季节和采样地点之间存在分离。浮游植物群落组成与环境变量之间关系的结果表明,元素循环的生态过程和大坝扰动对驱动河道浮游植物群落的组合至关重要。

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