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Cellular toxicity pathways of inorganic and methyl mercury in the green microalga Chlamydomonas reinhardtii

机译:绿色微藻莱茵衣藻中无机汞和甲基汞的细胞毒性途径

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摘要

Contamination by mercury (Hg) is a worldwide concern because of Hg toxicity and biomagnification in aquatic food webs. Nevertheless, bioavailability and cellular toxicity pathways of inorganic (IHg) and methyl-Hg (MeHg) remain poorly understood. We analyzed the uptake, transcriptomic, and physiological responses in the microalga Chlamydomonas reinhardtii exposed to IHg or MeHg. Bioavailability of MeHg was up to 27× higher than for IHg. Genes involved in cell processes, energy metabolism and transport were dysregulated by both Hg species. Physiological analysis revealed an impact on photosynthesis and reduction–oxidation reaction metabolism. Nevertheless, MeHg dysregulated a larger number of genes and with a stronger fold-change than IHg at equivalent intracellular concentration. Analysis of the perturbations of the cell’s functions helped to derive a detailed mechanistic understanding of differences in cellular handling of IHg and MeHg resulting in MeHg having a stronger impact. This knowledge is central for the prediction of impact of toxicants on organisms.
机译:由于汞的毒性和水生食物网中的生物放大作用,汞(Hg)污染已成为全球关注的问题。然而,无机(IHg)和甲基汞(MeHg)的生物利用度和细胞毒性途径仍然知之甚少。我们分析了暴露于IHg或MeHg的微藻莱茵衣藻的吸收,转录组和生理反应。 MeHg的生物利用度比IHg高27倍。两种汞物种均与细胞过程,能量代谢和运输相关的基因失调。生理分析揭示了对光合作用和还原-氧化反应代谢的影响。然而,在同等的细胞内浓度下,MeHg与IHg相比失调了更多的基因,并且折叠变化更强。对细胞功能微扰的分析有助于对IHg和MeHg的细胞处理差异产生详细的机械理解,从而使MeHg产生更强的影响。该知识对于预测有毒物质对生物的影响至关重要。

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