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Impacts of the invasive Spartina anglica on C-S-Hg cycles and Hg(II) methylating microbial communities revealed by hgcA gene analysis in intertidal sediment of the Han River estuary, Yellow Sea

Authors
Park, JisuCho, HyeyounHan, SeungheeAn, Sung-UkChoi, AyeonLee, HyeonjiHyun, Jung -Ho
Issue Date
Feb-2023
Publisher
Pergamon Press Ltd.
Keywords
Hg(II) methylation; MeHg demethylation; Sulfate reduction; hgcA gene; Hg(II)-methylating microbial communities; Vegetated intertidal sediment
Citation
Marine Pollution Bulletin, v.187, pp 1 - 13
Pages
13
Indexed
SCIE
SCOPUS
Journal Title
Marine Pollution Bulletin
Volume
187
Start Page
1
End Page
13
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/112633
DOI
10.1016/j.marpolbul.2022.114498
ISSN
0025-326X
1879-3363
Abstract
We investigated the impact of invasive vegetation on mercury cycles, and identified microorganisms directly related to Hg(II) methylation using hgcA gene in vegetated mud flats (VMF) inhabited by native Suaeda japonica (SJ) and invasive Spartina anglica (SA), and unvegetated mud flats (UMF) in Ganghwa intertidal sediments. Sulfate reduction rate (SRR) and rate constants of Hg(II) methylation (Km) and methyl-Hg demethylation (Kd) were consistently greater in VMF than in UMF, specifically 1.5, 2 and 11.7 times higher, respectively, for SA. Both Km and Kd were significantly correlated with SRR and the abundance of sulfate-reducing bacteria. These results indicate that the rhizosphere of invasive SA provides a hotspot for Hg dynamics coupled with sulfate reduction. HgcA gene analysis revealed that Hg(II)-methylators were dominated by Deltaproteobacteria, Chloro-flexi and Euryarchaeota, comprising 37.9%, 35.8%, and 6.5% of total hgcA gene sequences, respectively, which implies that coastal sediments harbor diverse Hg(II)-methylating microorganisms that previously underrepresented.
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COLLEGE OF SCIENCE AND CONVERGENCE TECHNOLOGY (DEPARTMENT OF MARINE SCIENCE AND CONVERGENCE ENGINEERING)
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