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在以沉水植物为主导的水生生态系统中,细菌群落比藻类群落更容易受到纳米塑料的影响。

Bacterial community are more susceptible to nanoplastics than algae community in aquatic ecosystems dominated by submerged macrophytes.

作者信息

Hao Beibei, Wu Haoping, You Yi, Liang Ying, Huang Lihua, Sun Yan, Zhang Siyi, He Bin

机构信息

National-Regional Joint Engineering Research Center for Soil Pollution Control and Remediation in South China, Guangdong Key Laboratory of Integrated Agro-environmental Pollution Control and Management, Institute of Eco-environmental and Soil Sciences, Guangdong Academy of Sciences, Guangzhou 510650, China.

Guangdong Key Laboratory of Ornamental Plant Germplasm Innovation and Utilization, Environmental Horticulture Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, China.

出版信息

Water Res. 2023 Apr 1;232:119717. doi: 10.1016/j.watres.2023.119717. Epub 2023 Feb 8.

Abstract

As a ubiquitous emerging pollutant, microplastics can interact with algal and bacterial communities in aquatic ecosystems. Currently, knowledge on how microplastics influence algae/bacteria is mostly limited to toxicity tests using either monocultures of algae/bacteria or specific algal-bacterial consortium. However, information on the effect of microplastics on algal and bacterial communities in natural habitats is not easily available. Here, we conducted a mesocosm experiment to test the effect of nanoplastics on algal and bacterial communities in aquatic ecosystems dominated by different submerged macrophytes. The community structure of algae and bacteria suspended in the water column (planktonic) and attached to the surface of submerged macrophytes (phyllospheric) were identified, respectively. Results showed that both planktonic and phyllospheric bacteria were more susceptible to nanoplastics, and these variations driven by decreased bacterial diversity and increased abundance of microplastic-degrading taxa, especially in aquatic systems dominated by V. natans. The community composition of both algae and bacteria were influenced to varying degrees by nanoplastics and/or plant types, but RDA results showed that only bacterial community composition was strongly correlated with environmental variables. Correlation network analysis showed that nanoplastics not only reduced the intensity of associations between planktonic algae and bacteria (average degree reduced from 4.88 to 3.24), but also reduced proportion of positive correlations (from 64% to 36%). Besides, nanoplastics also decreased the algal/bacterial connections between planktonic and phyllospheric habitats. Our study elucidates the potential interactions between nanoplastics and algal-bacterial community in natural aquatic ecosystems. These findings suggest that in aquatic ecosystems, bacterial community are more vulnerable to nanoplastics and may serve as a protective barrier for algae community. Further research is needed to reveal the protective mechanism of bacteria against algae at the community level.

摘要

作为一种普遍存在的新兴污染物,微塑料可与水生生态系统中的藻类和细菌群落相互作用。目前,关于微塑料如何影响藻类/细菌的知识大多局限于使用藻类/细菌单培养或特定藻菌联合体进行的毒性测试。然而,关于微塑料对自然栖息地中藻类和细菌群落影响的信息却不易获取。在此,我们进行了一项中宇宙实验,以测试纳米塑料对以不同沉水植物为主的水生生态系统中藻类和细菌群落的影响。分别鉴定了悬浮在水柱中的藻类和细菌(浮游的)以及附着在沉水植物表面的藻类和细菌(叶际的)的群落结构。结果表明,浮游和叶际细菌对纳米塑料更敏感,这些变化是由细菌多样性降低和微塑料降解类群的丰度增加所驱动的,尤其是在由苦草主导的水生系统中。藻类和细菌的群落组成均受到纳米塑料和/或植物类型的不同程度影响,但冗余分析结果表明,只有细菌群落组成与环境变量密切相关。相关网络分析表明,纳米塑料不仅降低了浮游藻类和细菌之间的关联强度(平均度从4.88降至3.24),还降低了正相关的比例(从64%降至36%)。此外,纳米塑料还减少了浮游和叶际生境之间的藻菌联系。我们的研究阐明了纳米塑料与自然水生生态系统中藻菌群落之间的潜在相互作用。这些发现表明,在水生生态系统中,细菌群落对纳米塑料更敏感,可能作为藻类群落的保护屏障。需要进一步研究以揭示细菌在群落水平上对藻类的保护机制。

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