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Detailed Assessment of the Kinetics of Hg-Cell Association Hg Methylation and Methylmercury Degradation in Several Desulfovibrio Species

机译:几种脱硫弧菌物种中汞细胞缔合动力学汞甲基化和甲基汞降解的详细评估

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摘要

The kinetics of inorganic Hg [Hg(II)i] association, methylation, and methylmercury (MeHg) demethylation were examined for a group of Desulfovibrio species with and without MeHg production capability. We employed a detailed method for assessing MeHg production in cultures, including careful control of medium chemistry, cell density, and growth phase, plus mass balance of Hg(II)i and MeHg during the assays. We tested the hypothesis that differences in Hg(II)i sorption and/or uptake rates drive observed differences in methylation rates among Desulfovibrio species. Hg(II)i associated rapidly and with high affinity to both methylating and nonmethylating species. MeHg production by Hg-methylating strains was rapid, plateauing after ∼3 h. All MeHg produced was rapidly exported. We also tested the idea that all Desulfovibrio species are capable of Hg(II)i methylation but that rapid demethylation masks its production, but we found this was not the case. Therefore, the underlying reason why MeHg production capability is not universal in the Desulfovibrio is not differences in Hg affinity for cells nor differences in the ability of strains to degrade MeHg. However, Hg methylation rates varied substantially between Hg-methylating Desulfovibrio species even in these controlled experiments and after normalization to cell density. Thus, biological differences may drive cross-species differences in Hg methylation rates. As part of this study, we identified four new Hg methylators (Desulfovibrio aespoeensis, D. alkalitolerans, D. psychrotolerans, and D. sulfodismutans) and four nonmethylating species (Desulfovibrio alcoholivorans, D. tunisiensis, D. carbinoliphilus, and D. piger) in our ongoing effort to generate a library of strains for Hg methylation genomics.
机译:对于一组具有和不具有MeHg生产能力的Desulfovibrio物种,检查了无机Hg [Hg(II)i]缔合,甲基化和甲基汞(MeHg)脱甲基的动力学。我们采用了一种详细的方法来评估培养物中MeHg的产生,包括对培养基化学,细胞密度和生长阶段的仔细控制,以及测定过程中Hg(II)i和MeHg的质量平衡。我们测试了Hg(II)i吸附和/或吸收速率差异驱动观察到的脱硫弧菌物种间甲基化速率差异的假设。 Hg(II)i与甲基化和非甲基化物质快速缔合并具有高亲和力。 Hg甲基化菌株产生的MeHg很快,在约3小时后达到平稳。生产的所有甲基汞均迅速出口。我们还测试了所有脱硫弧菌物种均具有Hg(II)i甲基化能力,但快速脱甲基化掩盖了其生产的想法,但事实并非如此。因此,MeHg生产能力在脱硫弧菌中并不普遍的根本原因不是Hg对细胞的亲和力差异,也不是菌株降解MeHg的能力差异。但是,即使在这些受控实验中以及在归一化为细胞密度后,Hg甲基化的Desulfovibrio菌种之间的Hg甲基化速率也存在很大差异。因此,生物学差异可能会导致跨物种的汞甲基化率差异。作为这项研究的一部分,我们确定了四个新的Hg甲基化剂(Desulfovibrio aespoeensis,D.alkaltlerans,D。psychrotolerans和D. sulfodismutans)和四个非甲基化物种(Desulfovibrio alcoholivorans,D。tunisiensis,D。carbinoliphilus和D. Piger)。在我们不断努力的过程中,生成了Hg甲基化基因组学菌株库。

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