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Intra-habitat heterogeneity of environmental factors regulating bacterioplankton community composition in Lake Taihu, China

机译:太湖浮游细菌群落组成调控环境因子的栖息地内异质性

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摘要

To investigate the intra-habitat heterogeneity of environmental factors that may have an impact on the bacterioplankton community composition (BCC), a 1 yr observation was done at 2 study sites in Lake Taihu, a large shallow eutrophic lake in China. One site was located at the center of Meiliang Bay, the other site was near the central region of the lake. Denaturing gradient gel electrophoresis (DGGE) of PCR-amplified partial 16S rRNA gene fragments was applied to analyze BCC. The unweighted pair group method with arithmetic mean (UPGMA) was used to investigate differences among BCC. Redundancy analyses (RDA) of the gel patterns, in relation to the physical, chemical, and biological factors of the 2 sites, were performed. Differences between the samples in Meiliang Bay and the lake center were evident during all periods. Four variables (the biomass of Microcystis spp., chl a, dissolved inorganic phosphorus [DIP], and water turbidity) were most strongly correlated with the bacterioplankton DGGE patterns. Particularly, significant intra-habitat heterogeneity of the environmental factors was detected. In Meiliang Bay, seasonal variations in DIP concentration had a profound impact on the composition of bacterioplankton communities, while in the lake center, wind-induced frequent sediment resuspension was an important reason for the variations in BCC. The inherent intra-habitat heterogeneity of environmental conditions is essential to maintain the heterogeneity of BCC at the 2 study sites.
机译:为了研究可能影响浮游细菌群落组成(BCC)的环境因素的栖息地内异质性,在中国大型浅水富营养化湖太湖的两个研究地点进行了为期1年的观测。一个地点位于梅梁湾的中心,另一个地点位于湖中部地区附近。 PCR扩增的部分16S rRNA基因片段的变性梯度凝胶电泳(DGGE)用于分析BCC。采用算术平均值的非加权成对分组法(UPGMA)来研究BCC之间的差异。进行了与两个位点的物理,化学和生物学因素相关的凝胶模式的冗余分析(RDA)。在所有时期,美良湾和湖中心的样本之间存在明显差异。四个变量(微囊藻的生物量,chla,溶解的无机磷[DIP]和水的浊度)与浮游生物DGGE模式密切相关。特别地,检测到环境因素的明显的栖息地异质性。在梅良湾,DIP浓度的季节性变化对浮游生物群落的组成有深远的影响,而在湖中心,风引起的频繁的沉积物再悬浮是BCC变化的重要原因。环境条件固有的栖息地内部异质性对于维持两个研究地点的BCC异质性至关重要。

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