New insight into identifying sediment phosphorus sources in multi-source polluted urban river: Effect of environmental-induced microbial community succession on stability of microbial source tracking results

富营养化 环境科学 沉积物 源跟踪 城市河流 污染 生态演替 微生物种群生物学 非点源污染 环境监测 生态学 水文学(农业) 环境工程 营养物 水质 生物 地质学 化学 细菌 古生物学 遗传学 有机化学 万维网 计算机科学 岩土工程
作者
Wenlong Zhang,Zikang Tang,Yuting Yan,Chenyue Sun,Dalin He,Yi Li
出处
期刊:Environmental Research [Elsevier BV]
卷期号:247: 118215-118215
标识
DOI:10.1016/j.envres.2024.118215
摘要

Identifying sediment phosphorus sources, the key to control eutrophication, is hindered in multi-source polluted urban rivers by the lack of appropriate methods and data resolution. Community-based microbial source tracking (MST) offers new insight, but the bacterial communities could be affected by environmental fluctuations during the migration with sediments, which might induce instability of MST results. Therefore, the effects of environmental-induced community succession on the stability of MST were compared in this study. Liangxi River, a highly eutrophic urban river, was selected as the study area where sediment phosphorus sources are difficult to track because of multi-source pollution and complicated hydrodynamic conditions. Spearman correlation analysis (P < 0.05) was conducted to recognize a close relationship between sediment, bacterial communities and phosphorus, verifying the feasibility of MST for identify sediment phosphorus sources. Two distinct microbial community fingerprints were constructed based on whether excluded 113 vulnerable species, which were identified by analyzing the differences of microorganisms across a concentration gradient of exogenous phosphorus input in microbial environmental response experiment. Because of the lower unknown proportion and relative standard deviations, MST results were more stable and reliable when based on the fingerprints excluding species vulnerable to phosphorus. This study presents a novel insight on how to identify sediment phosphorus sources in multi-source polluted urban river, and would help to develop preferential control strategies for eutrophication management.

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