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TOWARD DETOXIFYING MERCURY-POLLUTED AQUATIC SEDIMENTS WITH RICE GENETICALLY ENGINEERED FOR MERCURY RESISTANCE

机译:遗传修饰的水稻,对汞污染的水生沉积物进行解毒

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摘要

Mercury contamination of soil and water is a serious problem at many sites in the United States and throughout the world. Plant species expressing the bacterial mercuric reductase gene, merA, convert ionic mercury, Hg(Ⅱ), from growth substrates to the less toxic metallic mercury, Hg(0). This activity confers mercury resistance to plants and removes mercury from the plant and substrates through volatilization. Our goal is to develop plants that intercept and remove Hg(Ⅱ) from polluted aquatic systems before it can undergo bacterially mediated methylation to the neurotoxic methylmercury. Therefore, the merA gene under the control of a monocot promoter was introduced into Oryza sativa L. (rice) by particle gun bombardment. This is the first monocot and first wetland-adapted species to express the gene. The merA-expressing rice germinated and grew on semi solid growth medium spiked with sufficient Hg(Ⅱ) to kill the nonengineered (wild-type) controls. To confirm that the resistance mechanism was the conversion of Hg(Ⅱ) to Hg(0), seedlings of merA-expressing O. sativa were grown in Hg(Ⅱ)-spiked liquid medium or water-saturated soil media and were shown to volatilize significantly more Hg(0) than wild-type counterparts. Further genetic manipulation could yield plants with increased efficiency to extract soil Hg(Ⅱ) and volatilize it as Hg(0) or with the novel ability to directly convert methylmercury to Hg(0).
机译:在美国和全世界的许多地方,土壤和水中的汞污染是一个严重的问题。表达细菌汞还原酶基因merA的植物物种将离子汞Hg(Ⅱ)从生长基质转化为毒性较小的金属汞Hg(0)。这种活动赋予植物耐汞性,并通过挥发从植物和底物中除去汞。我们的目标是开发一种植物,使其能够在细菌介导的甲基化作用转变为神经毒性甲基汞之前,从受污染的水生系统中拦截并去除Hg(Ⅱ)。因此,通过粒子枪轰击将单子叶植物启动子控制下的merA基因导入水稻。这是表达该基因的第一个单子叶植物和第一个适应湿地的物种。表达merA的水稻发芽并在掺有足够Hg(Ⅱ)的半固态生长培养基上生长,以杀死非工程(野生型)对照。为了确定抗药性的机理是Hg(Ⅱ)向Hg(0)的转化,表达merA的稻苗在Hg(Ⅱ)加标的液体培养基或水饱和的土壤培养基中生长,并表现出挥发作用。 Hg(0)比野生型对应物高得多。进一步的遗传操作可以提高植物提取土壤Hg(Ⅱ)并将其挥发为Hg(0)的效率,或者具有将甲基汞直接转化为Hg(0)的新颖能力。

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