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Enhanced phytoremediation of volatile environmental pollutants with transgenic trees

机译:转基因树木增强了对挥发性环境污染物的植物修复

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摘要

Small, volatile hydrocarbons, including trichloroethylene, vinyl chloride, carbon tetrachloride, benzene, and chloroform, are common environmental pollutants that pose serious health effects. We have developed transgenic poplar (Populus tremula × Populus alba) plants with greatly increased rates of metabolism and removal of these pollutants through the overexpression of cytochrome P450 2E1, a key enzyme in the metabolism of a variety of halogenated compounds. The transgenic poplar plants exhibited increased removal rates of these pollutants from hydroponic solution. When the plants were exposed to gaseous trichloroethylene, chloroform, and benzene, they also demonstrated superior removal of the pollutants from the air. In view of their large size and extensive root systems, these transgenic poplars may provide the means to effectively remediate sites contaminated with a variety of pollutants at much faster rates and at lower costs than can be achieved with current conventional techniques.
机译:小而易挥发的碳氢化合物,包括三氯乙烯,氯乙烯,四氯化碳,苯和氯仿,是常见的环境污染物,会对健康造成严重影响。我们已经开发了转基因杨树(Populus tremula×Populus alba)植物,它们通过细胞色素P450 2E1的过表达大大提高了新陈代谢的速度,并去除了这些污染物,P450 2E1是多种卤代化合物代谢中的关键酶。转基因杨树植物显示出从水培溶液中去除这些污染物的速率增加。当植物暴露于气态三氯乙烯,氯仿和苯时,它们还表现出了从空气中去除污染物的优异效果。鉴于它们的大尺寸和广泛的根系,这些转基因杨树可以提供以比当前常规技术更快的速率和更低的成本有效地修复被多种污染物污染的部位的手段。

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