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本文引用的文献

1
Detection of a key Hg methylation gene, hgcA, in wetland soils.湿地土壤中关键汞甲基化基因hgcA的检测
Environ Microbiol Rep. 2014 Oct;6(5):441-7. doi: 10.1111/1758-2229.12136.
2
Mercury methylation by HgcA: theory supports carbanion transfer to Hg(II).由HgcA介导的汞甲基化:理论支持碳负离子向Hg(II)的转移。
Inorg Chem. 2014 Jan 21;53(2):772-7. doi: 10.1021/ic401992y. Epub 2013 Dec 30.
3
Mercury methylation by novel microorganisms from new environments.新型环境中新型微生物的汞甲基化作用。
Environ Sci Technol. 2013 Oct 15;47(20):11810-20. doi: 10.1021/es403075t. Epub 2013 Sep 26.
4
Mercury methylation by the methanogen Methanospirillum hungatei.产甲烷菌 Methanospirillum hungatei 进行的汞甲基化。
Appl Environ Microbiol. 2013 Oct;79(20):6325-30. doi: 10.1128/AEM.01556-13. Epub 2013 Aug 9.
5
Genome sequences of two dehalogenation specialists – Dehalococcoides mccartyi strains BTF08 and DCMB5 enriched from the highly polluted Bitterfeld region.从高度污染的比特费尔德地区中富集得到的两种脱卤专家——地杆菌属菌株 BTF08 和 DCMB5 的基因组序列。
FEMS Microbiol Lett. 2013 Jun;343(2):101-4. doi: 10.1111/1574-6968.12160.
6
The genetic basis for bacterial mercury methylation.细菌汞甲基化的遗传基础。
Science. 2013 Mar 15;339(6125):1332-5. doi: 10.1126/science.1230667. Epub 2013 Feb 7.
7
Mechanisms regulating mercury bioavailability for methylating microorganisms in the aquatic environment: a critical review.调控水生环境中甲基化微生物汞生物可给性的机制:一项批判性回顾。
Environ Sci Technol. 2013 Mar 19;47(6):2441-56. doi: 10.1021/es304370g. Epub 2013 Feb 27.
8
Methanogens: principal methylators of mercury in lake periphyton.产甲烷菌:湖泊周丛生物中汞的主要甲基化作用因子。
Environ Sci Technol. 2011 Sep 15;45(18):7693-700. doi: 10.1021/es2010072. Epub 2011 Aug 29.
9
Metabolic flexibility of sulfate-reducing bacteria.硫酸盐还原菌的代谢灵活性
Front Microbiol. 2011 May 2;2:81. doi: 10.3389/fmicb.2011.00081. eCollection 2011.
10
MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods.MEGA5:用于最大似然法、进化距离法和最大简约法的分子进化遗传学分析。
Mol Biol Evol. 2011 Oct;28(10):2731-9. doi: 10.1093/molbev/msr121. Epub 2011 May 4.

在佛罗里达大沼泽地的水源保护区中,互营菌在与汞甲基化相关基因hgcA的序列中占主导地位。

Syntrophs dominate sequences associated with the mercury methylation-related gene hgcA in the water conservation areas of the Florida Everglades.

作者信息

Bae Hee-Sung, Dierberg Forrest E, Ogram Andrew

机构信息

Soil and Water Science Department, University of Florida, Gainesville, Florida, USA.

DB Environmental Inc., Rockledge, Florida, USA.

出版信息

Appl Environ Microbiol. 2014 Oct;80(20):6517-26. doi: 10.1128/AEM.01666-14. Epub 2014 Aug 8.

DOI:10.1128/AEM.01666-14
PMID:25107983
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4178645/
Abstract

The mechanisms and rates of mercury methylation in the Florida Everglades are of great concern because of potential adverse impacts on human and wildlife health through mercury accumulation in aquatic food webs. We developed a new PCR primer set targeting hgcA, a gene encoding a corrinoid protein essential for Hg methylation across broad phylogenetic boundaries, and used this primer set to study the distribution of hgcA sequences in soils collected from three sites along a gradient in sulfate and nutrient concentrations in the northern Everglades. The sequences obtained were distributed in diverse phyla, including Proteobacteria, Chloroflexi, Firmicutes, and Methanomicrobia; however, hgcA clone libraries from all sites were dominated by sequences clustering within the order Syntrophobacterales of the Deltaproteobacteria (49 to 65% of total sequences). dsrB mRNA sequences, representing active sulfate-reducing prokaryotes at the time of sampling, obtained from these sites were also dominated by Syntrophobacterales (75 to 89%). Laboratory incubations with soils taken from the site low in sulfate concentrations also suggested that Hg methylation activities were primarily mediated by members of the order Syntrophobacterales, with some contribution by methanogens, Chloroflexi, iron-reducing Geobacter, and non-sulfate-reducing Firmicutes inhabiting the sites. This suggests that prokaryotes distributed within clades defined by syntrophs are the predominant group controlling methylation of Hg in low-sulfate areas of the Everglades. Any strategy for managing mercury methylation in the Everglades should consider that net mercury methylation is not limited to the action of sulfate reduction.

摘要

由于汞在水生食物网中的积累可能对人类和野生动物健康产生不利影响,佛罗里达大沼泽地中汞甲基化的机制和速率备受关注。我们开发了一套新的针对hgcA的PCR引物,hgcA是一种编码类咕啉蛋白的基因,该蛋白对于跨广泛系统发育界限的汞甲基化至关重要,并使用这套引物来研究从大沼泽地北部硫酸盐和养分浓度梯度上的三个地点采集的土壤中hgcA序列的分布。获得的序列分布在不同的门中,包括变形菌门、绿弯菌门、厚壁菌门和甲烷微菌门;然而,所有地点的hgcA克隆文库都以δ变形菌门互营杆菌目的聚类序列为主(占总序列的49%至65%)。从这些地点获得的代表采样时活跃的硫酸盐还原原核生物的dsrB mRNA序列也以互营杆菌目为主(75%至89%)。对低硫酸盐浓度地点的土壤进行的实验室培养也表明,汞甲基化活性主要由互营杆菌目成员介导,产甲烷菌、绿弯菌、铁还原地杆菌和栖息在这些地点的非硫酸盐还原厚壁菌也有一定贡献。这表明分布在由互营菌定义的进化枝内的原核生物是大沼泽地低硫酸盐区域控制汞甲基化的主要群体。任何管理大沼泽地汞甲基化的策略都应考虑到汞的净甲基化不限于硫酸盐还原的作用。