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亚热带海湾浮游细菌群落从弱热污染到强热污染的突然状态转变。

An abrupt regime shift of bacterioplankton community from weak to strong thermal pollution in a subtropical bay.

作者信息

Shan Zhiyi, Chen Haiming, Deng Yuan, He Dan, Ren Lijuan

机构信息

Department of Ecology and Institute of Hydrobiology, Jinan University, Guangzhou, China.

Center for Evolution and Conservation Biology, Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), Guangzhou, China.

出版信息

Front Microbiol. 2024 Apr 30;15:1395583. doi: 10.3389/fmicb.2024.1395583. eCollection 2024.

Abstract

Thermal pollution from the cooling system of the nuclear power plants greatly changes the environmental and the ecological conditions of the receiving marine water body, but we know little about their impact on the steady-state transition of marine bacterioplankton communities. In this study, we used high-throughput sequencing based on the 16S rRNA gene to investigate the impact of the thermal pollution on the bacterioplankton communities in a subtropical bay (the Daya Bay). We observed that thermal pollution from the cooling system of the nuclear power plant caused a pronounced thermal gradient ranging from 19.6°C to 24.12°C over the whole Daya Bay. A temperature difference of 4.5°C between the northern and southern parts of the bay led to a regime shift in the bacterioplankton community structure. In the three typical scenarios of regime shifts, the steady-state transition of bacterioplankton community structure in response to temperature increasing was more likely consistent with an abrupt regime shift rather than a smooth regime or a discontinuous regime model. Water temperature was a decisive factor on the regime shift of bacterioplankton community structure. High temperature significantly decreased bacterioplankton diversity and shifted its community compositions. and of Cyanobacteria, NS5 marine group of Bacteroidota, and of Gammaproteobacteria were found that favored high temperature environments. Furthermore, the increased water temperature significantly altered the community assembly of bacterioplankton in Daya Bay, with a substantial decrease in the proportion of drift and others, and a marked increase in the proportion of homogeneous selection. In summary, we proposed that seawater temperature increasing induced by the thermal pollution resulted in an abrupt regime shift of bacterioplankton community in winter subtropical bay. Our research might broad our understanding of marine microbial ecology under future conditions of global warming.

摘要

核电站冷却系统产生的热污染极大地改变了受纳海水水体的环境和生态条件,但我们对其对海洋浮游细菌群落稳态转变的影响知之甚少。在本研究中,我们基于16S rRNA基因使用高通量测序来调查热污染对亚热带海湾(大亚湾)浮游细菌群落的影响。我们观察到,核电站冷却系统产生的热污染在整个大亚湾造成了19.6°C至24.12°C的明显热梯度。海湾南北部4.5°C的温差导致浮游细菌群落结构发生状态转变。在三种典型的状态转变情景中,浮游细菌群落结构响应温度升高的稳态转变更可能符合突然的状态转变,而不是平滑的状态转变或不连续的状态转变模型。水温是浮游细菌群落结构状态转变的决定性因素。高温显著降低了浮游细菌的多样性并改变了其群落组成。发现蓝细菌、拟杆菌门的NS5海洋类群以及γ-变形菌纲的[具体内容缺失]更适应高温环境。此外,水温升高显著改变了大亚湾浮游细菌的群落组装,其中漂流和其他因素的比例大幅下降,而均匀选择的比例显著增加。总之,我们认为热污染导致的海水温度升高导致了冬季亚热带海湾浮游细菌群落的突然状态转变。我们的研究可能会拓宽我们对全球变暖未来条件下海洋微生物生态学的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/faad/11091246/5db95bac5293/fmicb-15-1395583-g001.jpg

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