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溶解有机物与微生物群落之间的相互作用会因微塑料和热浪而发生改变。

Interactions between dissolved organic matter and the microbial community are modified by microplastics and heat waves.

作者信息

Wang Zhongwei, Hu Xiangang, Kang Weilu, Qu Qian, Feng Ruihong, Mu Li

机构信息

Key Laboratory of Pollution Processes and Environmental Criteria (Ministry of Education)/Tianjin Key Laboratory of Environmental Remediation and Pollution Control, College of Environmental Science and Engineering, Nankai University, 300350 Tianjin, China.

Key Laboratory of Pollution Processes and Environmental Criteria (Ministry of Education)/Tianjin Key Laboratory of Environmental Remediation and Pollution Control, College of Environmental Science and Engineering, Nankai University, 300350 Tianjin, China.

出版信息

J Hazard Mater. 2023 Apr 15;448:130868. doi: 10.1016/j.jhazmat.2023.130868. Epub 2023 Jan 25.

Abstract

Dissolved organic matter (DOM) exists widely in natural waters and plays an important role in river carbon cycles and greenhouse gas emissions through microbial interactions. However, information on DOM-microbe associations in response to environmental stress is limited. River environments are the main carriers of microplastic (MP) pollution, and global heat waves (HWs) are threatening river ecology. Here, through MP exposure and HW simulation experiments, we found that DOM molecular weight and aromaticity were closely related to initial microbial communities. Moreover, MP-derived DOM regulated microbial community abundance and diversity, influenced microorganism succession trajectories as deterministic factors, and competed with riverine DOM for microbial utilization. SimulatedHWs enhanced the MP-derived DOM competitive advantage and drove the microbial community to adopt a K-strategy for effective recalcitrant carbon utilization. Relative to single environmental stressor exposure, combined MP pollution and HWs led to a more unstable microbial network. This study addresses how MPs and HWs drive DOM-microbe interactions in rivers, contributes to an in-depth understanding of the fate of river DOM and microbial community succession processes, and narrows the knowledge gap in understanding carbon sinks in aquatic ecosystems influenced by human activities and climate change.

摘要

溶解有机物(DOM)广泛存在于天然水体中,通过微生物相互作用在河流碳循环和温室气体排放中发挥着重要作用。然而,关于DOM与微生物在环境胁迫下关联的信息有限。河流环境是微塑料(MP)污染的主要载体,全球热浪(HWs)正威胁着河流生态。在此,通过MP暴露和HW模拟实验,我们发现DOM的分子量和芳香性与初始微生物群落密切相关。此外,MP衍生的DOM调节微生物群落的丰度和多样性,作为确定性因素影响微生物演替轨迹,并与河流DOM竞争微生物利用。模拟的HWs增强了MP衍生的DOM竞争优势,并促使微生物群落采取K策略以有效利用难降解碳。相对于单一环境胁迫暴露,MP污染与HWs共同作用导致微生物网络更加不稳定。本研究探讨了MP和HWs如何驱动河流中DOM与微生物的相互作用,有助于深入了解河流DOM的归宿和微生物群落演替过程,并缩小了在理解受人类活动和气候变化影响的水生生态系统碳汇方面的知识差距。

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