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Phytoremediation of methylmercury pollution: merB expression in Arabidopsis thaliana confers resistance to organomercurials

机译:植物对甲基汞污染的修复:拟南芥中的merB表达赋予对有机汞的抗性

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摘要

Methylmercury is an environmental toxicant that biomagnifies and causes severe neurological degeneration in animals. It is produced by bacteria in soils and sediments that have been contaminated with mercury. To explore the potential of plants to extract and detoxify this chemical, we engineered a model plant, Arabidopsis thaliana, to express a modified bacterial gene, merBpe, encoding organomercurial lyase (MerB) under control of a plant promoter. MerB catalyzes the protonolysis of the carbon—mercury bond, removing the organic ligand and releasing Hg(II), a less mobile mercury species. Transgenic plants expressing merBpe grew vigorously on a wide range of concentrations of monomethylmercuric chloride and phenylmercuric acetate. Plants lacking the merBpe gene were severely inhibited or died at the same organomercurial concentrations. Six independently isolated transgenic lines produced merBpe mRNA and MerB protein at levels that varied over a 10- to 15-fold range, and even the lowest levels of merBpe expression conferred resistance to organomercurials. Our work suggests that native macrophytes (e.g., trees, shrubs, grasses) engineered to express merBpe may be used to degrade methylmercury at polluted sites and sequester Hg(II) for later removal.
机译:甲基汞是一种环境毒物,可生物放大并引起动物严重的神经系统退化。它是由被汞污染的土壤和沉积物中的细菌产生的。为了探索植物提取和解毒该化学品的潜力,我们设计了一个拟南芥模型植物,以表达修饰的细菌基因merBpe,在植物启动子的控制下编码有机汞裂解酶(MerB)。 MerB催化碳-汞键的质子分解,除去有机配体并释放出汞(II)(一种流动性较小的汞)。表达merBpe的转基因植物在各种浓度的氯化一甲基汞和乙酸苯汞中均能旺盛生长。缺乏merBpe基因的植物在相同的有机汞浓度下被严重抑制或死亡。六个独立分离的转基因品系产生的merBpe mRNA和MerB蛋白的水平在10至15倍的范围内变化,甚至最低的merBpe表达水平也赋予了对有机汞的抗性。我们的工作表明,为表达merBpe而设计的天然大型植物(例如树木,灌木,草)可用于在受污染的地点降解甲基汞,并隔离Hg(II)以便以后去除。

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