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Enhanced metabolism of halogenated hydrocarbons in transgenic plants containing mammalian cytochrome P450 2E1

机译:含有哺乳动物细胞色素P450 2E1的转基因植物中卤代烃的代谢增强

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摘要

Chlorinated solvents, especially trichloroethylene (TCE), are the most widespread groundwater contaminants in the United States. Existing methods of pumping and treating are expensive and laborious. Phytoremediation, the use of plants for remediation of soil and groundwater pollution, is less expensive and has low maintenance; however, it requires large land areas and there are a limited number of suitable plants that are known to combine adaptation to a particular environment with efficient metabolism of the contaminant. In this work, we have engineered plants with a profound increase in metabolism of the most common contaminant, TCE, by introducing the mammalian cytochrome P450 2E1. This enzyme oxidizes a wide range of important pollutants, including TCE, ethylene dibromide, carbon tetrachloride, chloroform, and vinyl chloride. The transgenic plants had a dramatic enhancement in metabolism of TCE of up to 640-fold as compared with null vector control plants. The transgenic plants also showed an increased uptake and debromination of ethylene dibromide. Therefore, transgenic plants with this enzyme could be used for more efficient remediation of many sites contaminated with halogenated hydrocarbons.
机译:氯化溶剂,尤其是三氯乙烯(TCE),是美国最广泛的地下水污染物。现有的泵送和处理方法昂贵且费力。植物修复是将植物用于土壤和地下水污染的修复,价格便宜,维护成本低;然而,这需要大的土地面积,并且已知有限数量的合适植物将对特定环境的适应与污染物的有效代谢结合在一起。在这项工作中,我们通过引入哺乳动物细胞色素P450 2E1设计出了能够显着提高最常见污染物TCE代谢的植物。该酶可氧化多种重要污染物,包括三氯乙烯,二溴乙烷,四氯化碳,氯仿和氯乙烯。与无效载体对照植物相比,转基因植物的TCE代谢显着提高了640倍。转基因植物还显示出对二溴乙烷的吸收和脱溴增加。因此,具有该酶的转基因植物可用于更有效地修复许多被卤代烃污染的位点。

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