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Influences of anthropogenic land use on microbial community structure and functional potentials of stream benthic biofilms

机译:人为土地利用对河流底栖生物膜微生物群落结构和功能潜力的影响

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Stream ecosystems are the primary receivers of nutrient and organic carbon exported from terrestrial ecosystems and are profoundly influenced by the land use of the surrounding landscape. The aquatic impacts of anthropogenic land use are often first observed in stream benthic biofilms. We studied the benthic biofilms in streams flowing through forest (upstream) and anthropogenic land use (downstream) areas in southwestern China. The results showed that anthropogenic land use increased nutrient and organic carbon in both stream water and benthic biofilms, which are closely related to the differences in the microbial communities. The taxonomic dissimilarity of the communities was significantly correlated with the functional gene dissimilarity, and the upstream sites had more distinct functional genes. Network analysis showed that upstream sites had more highly connected microbial networks. Furthermore, downstream sites had higher relative abundances of anammox and denitrification suggesting stronger nitrogen removal than upstream sites. Increased nutrients in both the stream water and biofilms caused by anthropogenic land use had severe impacts on the nitrogen cycle in stream ecosystems. Downstream sites also had stronger carbon metabolism than upstream sites. This study provides insights into the influences of anthropogenic land use on microbial community structure and functions of stream benthic biofilms.
机译:河流生态系统是陆地生态系统输出的养分和有机碳的主要接收者,并受到周围景观的土地利用的深刻影响。人为土地利用对水的影响通常首先在河流底栖生物膜中观察到。我们研究了流经中国西南部森林(上游)和人为土地利用(下游)地区的溪流中的底栖生物膜。结果表明,人为土地利用增加了溪流水和底栖生物膜中的养分和有机碳,这与微生物群落的差异密切相关。群落的分类学差异与功能基因差异显着相关,且上游位点具有更多不同的功能基因。网络分析表明,上游站点的微生物网络连接程度更高。此外,下游站点的厌氧氨氧化和反硝化的相对丰度较高,这表明其氮去除率要高于上游站点。人为土地利用引起的溪流水和生物膜养分增加,对溪流生态系统的氮循环产生了严重影响。下游站点的碳代谢也比上游站点强。这项研究为人为土地利用对河流底栖生物膜微生物群落结构和功能的影响提供了见识。

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