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流态间歇性与新兴污染物暴露联合作用对河流生物膜细菌群落组成和代谢响应的影响。

Effects of combining flow intermittency and exposure to emerging contaminants on the composition and metabolic response of streambed biofilm bacterial communities.

机构信息

Ruđer Bošković Institute, Bijenička cesta 54, 10000 Zagreb, Croatia; Catalan Institute for Water Research (ICRA), Emili Grahit 101, 17003 Girona, Spain.

Catalan Institute for Water Research (ICRA), Emili Grahit 101, 17003 Girona, Spain.

出版信息

Sci Total Environ. 2023 Jun 15;877:162818. doi: 10.1016/j.scitotenv.2023.162818. Epub 2023 Mar 11.

Abstract

Freshwater ecosystems are characterised by the co-occurrence of stressors that simultaneously affect the biota. Among these, flow intermittency and chemical pollution severely impair the diversity and functioning of streambed bacterial communities. Using an artificial streams mesocosm facility, this study examined how desiccation and pollution caused by emerging contaminants affect the composition of stream biofilm bacterial communities, their metabolic profiles, and interactions with their environment. Through an integrative analysis of the composition of biofilm communities, characterization of their metabolome and composition of the dissolved organic matter, we found strong genotype-to-phenotype interconnections. The strongest correlation was found between the composition and metabolism of the bacterial community, both of which were influenced by incubation time and desiccation. Unexpectedly, no effect of the emerging contaminants was observed, which was due to the low concentration of the emerging contaminants and the dominant impact of desiccation. However, biofilm bacterial communities modified the chemical composition of their environment under the effect of pollution. Considering the tentatively identified classes of metabolites, we hypothesised that the biofilm response to desiccation was mainly intracellular while the response to chemical pollution was extracellular. The present study demonstrates that metabolite and dissolved organic matter profiling may be effectively integrated with compositional analysis of stream biofilm communities to yield a more complete picture of changes in response to stressors.

摘要

淡水生态系统的特点是同时存在多种胁迫因子,这些因子会同时影响生物区系。在这些因子中,水流间歇性和化学污染严重损害了河床细菌群落的多样性和功能。本研究使用人工溪流中观设施,研究了干燥和新兴污染物污染如何影响溪流生物膜细菌群落的组成、它们的代谢特征以及它们与环境的相互作用。通过对生物膜群落组成的综合分析、代谢组学的特征描述以及溶解有机物质的组成,我们发现了强烈的基因型到表型的相互联系。在细菌群落的组成和代谢之间发现了最强的相关性,这两者都受到孵育时间和干燥的影响。出乎意料的是,新兴污染物没有观察到效果,这是由于新兴污染物的浓度低和干燥的主导影响。然而,生物膜细菌群落改变了其环境的化学组成,受到了污染的影响。考虑到暂定鉴定的代谢物类别,我们假设生物膜对干燥的反应主要是细胞内的,而对化学污染的反应是细胞外的。本研究表明,代谢物和溶解有机物质的分析可以与溪流生物膜群落的组成分析有效地结合起来,以更全面地了解对胁迫的反应变化。

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