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全长 16S rRNA 基因测序揭示了中国重污染河口细菌群落的时空动态。

Full-length 16S rRNA gene sequencing reveals spatiotemporal dynamics of bacterial community in a heavily polluted estuary, China.

机构信息

State Environmental Protection Key Laboratory of Coastal Ecosystem, National Marine Environmental Monitoring Center, Dalian, 116023, China.

State Environmental Protection Key Laboratory of Coastal Ecosystem, National Marine Environmental Monitoring Center, Dalian, 116023, China.

出版信息

Environ Pollut. 2021 Apr 15;275:116567. doi: 10.1016/j.envpol.2021.116567. Epub 2021 Jan 23.

Abstract

Understanding the bacterial community structure of the river estuary could provide insights into the resident microorganisms in response to environmental pollution. In this study, the bacterial community structure of Liaohe Estuary was investigated using single-molecule real-time sequencing (SMRT). A total of 57 samples were collected and grouped according to habitat, space, season, and lifestyle. In seawater, regardless of whether it is particle-attached (PA) or free-living (FL) bacteria, the area with higher alpha diversity is the nearshore area in the dry season, while it is the midstream area in the wet season. The bacterial communities in sediment and seawater samples were different at the genus level in the nearshore area, and habitat type was the main factor. A marked difference in the bacterial community was observed in the dry season between different lifestyles but not in the wet season, which resulted from lifestyle transitions of bacterioplankton. Bacterial community varied spatially but not seasonally in sediment samples. In seawater, both FL and PA bacterial communities varied spatially during the wet season. Seasonal differences were only observed in FL bacterial community. Zn and sand were the principal determining factors of the bacterial community in the sediment, Cu and salinity were the main environmental factors for FL bacteria, and Cu, salinity, Zn and temperature were the main environmental factors for PA bacteria. Besides, the tide and nutrients were also the main drivers of the bacterial community in seawater. The indicative taxa, related to Cyanobium_PCC-6307, Pseudomonas and Vibrio, further evidenced the presence of possible bloom, crude oil and pathogen contamination. Overall, our results can contribute to the knowledge of the bacterial community and anthropogenic impacts on the Liaohe Estuary.

摘要

了解河口的细菌群落结构可以深入了解对环境污染有反应的栖息微生物。本研究采用单分子实时测序(SMRT)技术研究了辽河口的细菌群落结构。共采集了 57 个样本,并根据栖息地、空间、季节和生活方式进行了分组。在海水中,无论是否为颗粒附着(PA)或自由生活(FL)细菌,α多样性较高的区域都是旱季的近岸区,而在雨季则是中游区。近岸区沉积物和海水样本中的细菌群落在属水平上存在差异,栖息地类型是主要因素。旱季不同生活方式的细菌群落差异明显,但雨季没有,这是由于浮游细菌的生活方式转变。沉积物样本中的细菌群落空间变化但季节不变。在海水中,FL 和 PA 细菌群落在雨季均具有空间变异性。仅在 FL 细菌群落中观察到季节性差异。Zn 和沙子是沉积物中细菌群落的主要决定因素,Cu 和盐度是 FL 细菌的主要环境因素,Cu、盐度、Zn 和温度是 PA 细菌的主要环境因素。此外,潮流和养分也是海水细菌群落的主要驱动因素。指示性分类群与 Cyanobium_PCC-6307、Pseudomonas 和 Vibrio 有关,进一步证明了可能存在浮游生物大量繁殖、原油和病原体污染的情况。总的来说,我们的研究结果可以为辽河口的细菌群落和人为影响提供知识。

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