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首页> 外文期刊>Archives of Environmental Contamination and Toxicology >Sequencing Insights into Microbial Communities in the Water and Sediments of Fenghe River, China
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Sequencing Insights into Microbial Communities in the Water and Sediments of Fenghe River, China

机译:奉河水体和沉积物中微生物群落的测序洞察

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The connection between microbial community structure and spatial variation and pollution in river waters has been widely investigated. However, water and sediments together have rarely been explored. In this study, Illumina high-throughput sequencing was performed to analyze microbes in 24 water and sediment samples from natural to anthropogenic sources and from headstream to downstream areas. These data were used to assess variability in microbial community structure and diversity along in the Fenghe River, China. The relationship between bacterial diversity and environmental parameters was statistically analyzed. An average of 1682 operational taxonomic units was obtained. Microbial diversity increased from the headstream to downstream and tended to be greater in sediment compared with water. The water samples near the headstream endured relatively low Shannon and Chao1 indices. These diversity indices and the number of observed species in the water and sediment samples increase downstream. The parameters also differ in the two river tributaries. Community structures shift based on the extent of nitrogen pollution variation in the sediment and water samples. The four most dominant genera in the water community were Escherichia, Acinetobacter, Comamonadaceae, and Pseudomonas. In the sediments, the most dominant genera were Stramenopiles, Flavobacterium, Pseudomonas, and Comamonadaceae. The number of ammonia-oxidizing archaea in the headstream water slightly differed from that in the sediment but varied considerably in the downstream sediments. Statistical analysis showed that community variation is correlated with changes in ammonia nitrogen, total nitrogen, and nitrate nitrogen. This study identified different microbial community structures in river water and sediments. Overall this study emphasized the need to elucidate spatial variations in bacterial diversity in water and sediments associated with physicochemical gradients and to show the effects of such variation on waterborne microbial community structures.
机译:河流水域微生物群落结构与空间变化和污染之间的联系已得到广泛研究。但是,很少一起研究水和沉积物。在这项研究中,Illumina进行了高通量测序,以分析从自然到人为来源以及从上游到下游地区的24个水和沉积物样品中的微生物。这些数据被用来评估中国风河沿岸微生物群落结构的多样性和多样性。统计分析细菌多样性与环境参数之间的关系。平均获得了1682个业务分类单位。微生物多样性从上游到下游增加,并且与水相比,沉积物中的微生物倾向于增加。源头附近的水样忍受着较低的香农指数和超一指数。这些多样性指数以及在水和沉积物样本中观察到的物种数量在下游增加。两个河流支流的参数也不同。群落结构根据沉积物和水样中氮污染变化的程度而变化。水社区中最主要的四个属是大肠埃希菌,不动杆菌属,昏迷科和假单胞菌。在沉积物中,最主要的属是Stramenopiles,黄杆菌,假单胞菌和Comamonadaceae。上游水体中氨氧化古菌的数量与沉积物中的数量略有不同,但下游沉积物中的氨氧化古菌数量却有很大差异。统计分析表明,群落变化与氨氮,总氮和硝酸盐氮的变化相关。这项研究确定了河水和沉积物中不同的微生物群落结构。总体而言,这项研究强调需要阐明与理化梯度相关的水和沉积物中细菌多样性的空间变化,并显示这种变化对水生微生物群落结构的影响。

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