Water level fluctuations influence microbial communities and mercury methylation in soils in the Three Gorges Reservoir,China

被引:2
作者
Yuping Xiang [1 ]
Yongmin Wang [1 ,2 ,3 ]
Cheng Zhang [1 ,2 ,3 ]
Hong Shen [1 ,2 ]
Dingyong Wang [1 ,2 ,3 ]
机构
[1] College of Resources and Environment, Southwest University
[2] Chongqing Engineering Research Center for Agricultural Non-point Source Pollution Control in the Three Gorges Reservoir Area
[3] Chongqing Key Laboratory of Agricultural Resources and Environment
关键词
Water level fluctuation zone; Three Gorges Reservoir; Soil; Microbial communities; Methylmercury; Methylators;
D O I
暂无
中图分类号
X172 [环境微生物学]; X592 [农用化学物质、有毒化学物质污染及其防治];
学科分类号
071012 ; 0713 ; 082803 ;
摘要
Reservoirs tend to have enhanced methylmercury(MeHg) concentrations compared to natural lakes and rivers, and water level fluctuations can promote MeHg production. Until now, little research has been conducted on the effects of microorganisms in soils for the formation of MeHg during different drying and flooding alternating conditions in the Three Gorges Reservoir(TGR). This study aimed to understand how water level fluctuations affect soil microbial composition and mercury concentrations, and if such microbial variations are related to Hg methylation. The results showed that MeHg concentrations and the ratios of MeHg to THg(MeHg%) in soils were higher in the seasonally drying and flooding alternating areas(DFAs, 175–155 m) than those in the non-inundated(NIAs, > 175 m) and inundated areas(IAs, < 145 m). However, MeHg% in all samples was less than 1%, indicating that the Hg methylation activity in the soils of the TGR was under a low level. 454 highthroughput sequencing of 16 S rRNA gene amplicons showed that soil bacterial abundance and diversity were relatively higher in DFA compared to those in NIA and IA, and microbial community composition varied in these three areas. At the family level, those groups in Deltaproteobacteria and Methanomicrobia that might have many Hg methylators were also showed a higher relative abundance in DFA, which might be the reason for the higher MeHg production in these areas. Overall, our results suggested that seasonally water level fluctuations can enhance the microbial abundance and diversity, as well as MeHg production in the TGR.
引用
收藏
页码:206 / 217
页数:12
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