School of Water Resources and Environment, China University of Geosciences (Beijing), 100083, Beijing, China; Shenyang Geological Survey, China Geological Survey, 110034, Shenyang, China.
Institute of Groundwater and Earth Science, Jinan University, 510632, Guangzhou, China; Green Development Institute of Zhaoqing, 526000, Zhaoqing, China; Guangdong-Hongkong-Macau Joint Laboratory of Collaborative Innovation for Environmental Quality, 510632, Guangzhou, China.
J Environ Manage. 2020 Oct 1;271:110969. doi: 10.1016/j.jenvman.2020.110969. Epub 2020 Jun 20.
To gain a better understanding of the microbial community in salt-freshwater mixing zones, in this study, the influence of seasonal variation on the groundwater microbial community was evaluated by high throughput 16S rDNA gene sequencing. The results showed that notable changes in microbial community occurred in a salt-freshwater mixing zone and the groundwater samples in the dry season were more saline than those in the wet season. The increase in precipitation during the wet season relieved local seawater intrusion. Microbial diversity varied greatly with seasons, while no obvious change pattern was found. Proteobacteria was identified as the dominant phylum in all samples. The genus Hydrogenophaga dominated in the dry season, while the genus Acidovorax dominated in the wet season. Dissolved oxygen affected the diversity of the microbial communities during the dry and wet season, while groundwater level had a strong influence on the structure of microbial communities. Phylogenetic molecular network analysis of the microbial communities indicated that increased seawater intrusion led to a more compact microbial network and strengthening the groundwater microbial interactions.
为了更好地了解盐-淡水混合区的微生物群落,本研究通过高通量 16S rDNA 基因测序评估了季节性变化对地下水微生物群落的影响。结果表明,在盐-淡水混合区发生了显著的微生物群落变化,且旱季的地下水样品比雨季的更咸。雨季降水的增加缓解了当地海水入侵。微生物多样性随季节变化很大,而没有明显的变化模式。所有样品中都鉴定出变形菌门为优势门。在旱季,氢噬菌属占主导地位,而在雨季,食酸菌属占主导地位。溶解氧在旱季和雨季影响微生物群落的多样性,而地下水位对微生物群落的结构有很强的影响。微生物群落的系统发育分子网络分析表明,海水入侵的增加导致微生物网络更加紧密,加强了地下水微生物的相互作用。