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基因表达水平和汞可用性共同解释了分层咸水中甲基汞的形成。

Expression Levels of Genes and Mercury Availability Jointly Explain Methylmercury Formation in Stratified Brackish Waters.

机构信息

Department of Chemistry, Umeå University, Umeå 901 87, Sweden.

Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, Uppsala 750 07, Sweden.

出版信息

Environ Sci Technol. 2022 Sep 20;56(18):13119-13130. doi: 10.1021/acs.est.2c03784. Epub 2022 Sep 7.

Abstract

Neurotoxic methylmercury (MeHg) is formed by microbial methylation of inorganic divalent Hg (Hg) and constitutes severe environmental and human health risks. The methylation is enabled by and genes, but it is not known if the associated molecular-level processes are rate-limiting or enable accurate prediction of MeHg formation in nature. In this study, we investigated the relationships between genes and MeHg across redox-stratified water columns in the brackish Baltic Sea. We showed, for the first time, that transcript abundance and the concentration of dissolved Hg-sulfide species were strong predictors of both the Hg methylation rate and MeHg concentration, implying their roles as principal joint drivers of MeHg formation in these systems. Additionally, we characterized the metabolic capacities of microorganisms by reconstructing their genomes from metagenomes (i.e., MAGs), which highlighted the versatility of putative Hg methylators in the water column of the Baltic Sea. In establishing relationships between transcripts and the Hg methylation rate, we advance the fundamental understanding of mechanistic principles governing MeHg formation in nature and enable refined predictions of MeHg levels in coastal seas in response to the accelerating spread of oxygen-deficient zones.

摘要

神经毒性甲基汞(MeHg)是由微生物将无机二价汞(Hg)甲基化形成的,对环境和人类健康构成严重威胁。这种甲基化是由 和 基因促成的,但目前尚不清楚相关的分子水平过程是否是限速的,或者是否能够准确预测自然界中 MeHg 的形成。在这项研究中,我们调查了在波罗的海半咸水水柱中 基因与 MeHg 之间的关系。我们首次表明, 转录物丰度和溶解的 Hg-硫化物种类的浓度是 Hg 甲基化速率和 MeHg 浓度的强有力预测因子,这意味着它们是这些系统中 MeHg 形成的主要共同驱动因素。此外,我们通过从宏基因组(即 MAG)重建 微生物的基因组,描述了 微生物的代谢能力,这突出了波罗的海水柱中潜在 Hg 甲基化剂的多功能性。在建立 转录物与 Hg 甲基化速率之间的关系时,我们深入了解了自然环境中 MeHg 形成的机制原理,并能够根据富氧区的加速扩散,对沿海海域的 MeHg 水平进行更精确的预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8a7/9494745/a5f708e40c4c/es2c03784_0002.jpg

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