生物
Mercury(编程语言)
地球微生物学
微生物生态学
环境化学
生态学
环境生物技术
细菌
遗传学
计算机科学
化学
程序设计语言
作者
Andrea G. Bravo,Jakob Zopfi,Moritz Buck,Jingying Xu,Stefan Bertilsson,Jeffra K. Schaefer,John Poté,Claudia Cosio
出处
期刊:The ISME Journal
[Springer Nature]
日期:2018-01-09
卷期号:12 (3): 802-812
被引量:103
标识
DOI:10.1038/s41396-017-0007-7
摘要
Microbial mercury (Hg) methylation in sediments can result in bioaccumulation of the neurotoxin methylmercury (MMHg) in aquatic food webs. Recently, the discovery of the gene hgcA, required for Hg methylation, revealed that the diversity of Hg methylators is much broader than previously thought. However, little is known about the identity of Hg-methylating microbial organisms and the environmental factors controlling their activity and distribution in lakes. Here, we combined high-throughput sequencing of 16S rRNA and hgcA genes with the chemical characterization of sediments impacted by a waste water treatment plant that releases significant amounts of organic matter and iron. Our results highlight that the ferruginous geochemical conditions prevailing at 1-2 cm depth are conducive to MMHg formation and that the Hg-methylating guild is composed of iron and sulfur-transforming bacteria, syntrophs, and methanogens. Deltaproteobacteria, notably Geobacteraceae, dominated the hgcA carrying communities, while sulfate reducers constituted only a minor component, despite being considered the main Hg methylators in many anoxic aquatic environments. Because iron is widely applied in waste water treatment, the importance of Geobacteraceae for Hg methylation and the complexity of Hg-methylating communities reported here are likely to occur worldwide in sediments impacted by waste water treatment plant discharges and in iron-rich sediments in general.
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