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The spatial and seasonal variations of bacterial community structure and influencing factors in river sediments

机译:河流沉积物中细菌群落结构的时空变化及其影响因素

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摘要

Studying the composition and structure of bacterial communities in sediments helps to understand the contribution of bacteria to environmental changes and the role of feedback in response to disturbances. However, seasonal changes in bacterial communities of river sediments with different pollution levels and sources have not been clear yet. In this study, we collected sediment samples during the dry season, wet season and level season from 40 sites with various pollution sources in three inflow rivers (Fengle-Hangbu River, Nanfei River and Zhegao River) of Chaohu Lake. Bacterial community compositions were determined based on high-throughput sequencing. The 'Bioenv' in the R package 'Vegan' and redundancy analysis was used to explore the influence of environmental factors on the bacterial community in the river sediments. Results showed that a significant deviation in bacterial communities was found among seasons and rivers. In addition, seasonal dynamics had a greater impact on shaping bacterial communities than rivers with different pollution sources. A higher diversity was found in the wet season as compared to the other seasons. The bacterial diversity was negatively correlated with nutrients (OM, TN, NH4+, IP, OP and TP) and metals (Cu and Zn). Bacterial communities were more sensitive to heavy metals pressure than nutrients. We also concluded that heavy metals (Cu and Cd) were the key contributing factors in explaining variations in bacterial communities. This study provided a valuable reference for assessing ecological stress.
机译:研究沉积物中细菌群落的组成和结构有助于了解细菌对环境变化的贡献以及响应扰动的反馈作用。但是,尚不清楚具有不同污染水平和污染源的河流沉积物细菌群落的季节性变化。在这项研究中,我们收集了巢湖三条入江(丰乐-杭埠河,南River河和浙高河)的40个具有各种污染源的站点在干燥季节,潮湿季节和水平季节的沉积物样本。根据高通量测序确定细菌群落组成。 R包“ Vegan”中的“ Bioenv”和冗余分析用于探讨环境因素对河流沉积物中细菌群落的影响。结果表明,不同季节和河流之间细菌群落存在明显差异。此外,与污染源不同的河流相比,季节动态对细菌群落形成的影响更大。与其他季节相比,在雨季中发现了更高的多样性。细菌多样性与养分(OM,TN,NH4 +,IP,OP和TP)和金属(铜和锌)呈负相关。细菌群落对重金属的压力比营养更为敏感。我们还得出结论,重金属(铜和镉)是解释细菌群落变化的关键因素。该研究为评估生态压力提供了有价值的参考。

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