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首页> 外文期刊>Journal of Freshwater Ecology >Bacterial community composition in aquatic and sediment samples with spatiotemporal dynamics in large, shallow, eutrophic Lake Chaohu, China
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Bacterial community composition in aquatic and sediment samples with spatiotemporal dynamics in large, shallow, eutrophic Lake Chaohu, China

机译:大型浅水富营养化巢湖水生和沉积物样品中细菌群落组成的时空动态

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Lake Chaohu is a representative lake in China that suffers from severe eutrophication and algal blooms. In this study, the composition of bacterial communities in the water and sediment from one of the inlets and outlets of Lake Chaohu in response to spatiotemporal changes was analyzed by Illumina MiSeq sequencing of the V4 region of the 16S rRNA gene. Substantially distinct bacterial community composition was observed between the water column and sediments in both the Zhaohe (the inlet, C1) and Yuxihe Rivers (the outlet, C2). The phyla of the water samples were Cyanobacteria , Proteobacteria , Actinobacteria and Bacteroidetes , whereas the sediment samples were dominated by Proteobacteria , Acidobacteria , Chloroflexi and Nitrospirae . The sediment exhibited higher diversity and richness than did the water column at the two sites, with the sediment samples from the Yuxihe River showing higher richness and lower diversity than those from the Zhaohe River. The pattern of spatiotemporal changes indicated the seasonal factor, rather than the region, to be the primary cause of the observed variation in the bacterial structure in Lake Chaohu. In water samples from the two study areas, unclassified genera of Cyanobacteria dominated in winter, with members of unclassified FamilyI and unclassified Cyanobacterium . Moreover, redundancy analysis indicated that water temperature (T), total phosphorus (TP), organic carbon (OC) and total nitrogen (TN) were all determined to be related to bacterial community structure. And T and TP were the main factors influencing the water bacterial structure and that OC and TN were the main indicators determining the sediment bacterial structure. The results of this study may be useful for indicating the tendency of bacteria to respond to environmental changes in Lake Chaohu.
机译:巢湖是中国典型的富营养化和藻华的湖泊。在这项研究中,通过Illumina MiSeq对16S rRNA基因V4区进行测序,分析了巢湖出水口中水和沉积物中细菌群落的组成,以响应时空变化。在昭和河(C1)和玉溪河(C2)的水柱和沉积物之间观察到了明显不同的细菌群落组成。水样的菌群是蓝细菌,变形杆菌,放线菌和拟杆菌,而沉积物样品则以变形杆菌,嗜酸杆菌,嗜绿弯曲菌和> i>硝化螺旋体。与两个地点的水柱相比,沉积物表现出更高的多样性和丰富性,其中玉溪河的沉积物样品比赵河的沉积物具有更高的丰度和更低的多样性。时空变化的模式表明季节因素,而不是区域因素,是引起巢湖细菌结构变化的主要原因。在这两个研究区的水样中,冬季未分类的蓝藻属占主导地位,未分类的FamilyI和未分类的蓝藻属成员。此外,冗余分析表明,水温(T),总磷(TP),有机碳(OC)和总氮(TN)均与细菌群落结构有关。 T和TP是影响水体细菌结构的主要因素,而OC和TN是决定沉积物细菌结构的主要指标。这项研究的结果可能有助于指出巢湖细菌对环境变化的响应趋势。

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