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Molecular mechanisms in phytoremediation of environmental contaminants and prospects of engineered transgenic plants/microbes

机译:植物修复环境污染物的分子机制及转基因植物/微生物的前景

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摘要

Concerns about emerging environmental contaminants have been growing along with industrialization and urbanization around the globe. Among various options for remediating these contaminants, phytotechnology is suggested as a feasible option to maintain the environmental sustainability. The recent advances in phytoremediation, genetic/molecular/omics/metabolic engineering, and nanotechnology are opening new paths for efficient treatment of emerging organic/inorganic contaminants. In this respect, elucidation of molecular mechanisms and genetic engineering of hyperaccumulator plants is expected to enhance remediation of environmental contaminants. This review was organized to offer valuable insights into the molecular mechanisms of phytoremediation and the prospects of transgenic hyperaccumulators with enhanced stress tolerance to diverse contaminants such as heavy metals and metalloids, xenobiotics, explosives, poly aromatic hydrocarbons (PAHs), petroleum hydrocarbons, pesticides, and nanoparticles. The roles of genoremediation and nanoparticles in augmenting the phytoremediation technology are also described in an interrelated framework with biotech-nological prospects (e.g., plant molecular nano-farming). Finally, political debate on the preferential use of crops versus non-crop hyperaccumulatots in genoremediation, limitations of transgenics in phytotechnologies, and their public acceptance issues are discussed in the policy framework
机译:随着全球工业化和城市化的发展,人们对新兴环境污染物的担忧日益增加。在补救这些污染物的各种选择中,建议采用植物技术作为维持环境可持续性的可行选择。植物修复,遗传/分子/组学/代谢工程和纳米技术的最新进展为有效处理新兴的有机/无机污染物开辟了新途径。在这方面,对高蓄积植物的分子机制和基因工程的阐明有望增强对环境污染物的修复。这次审查的目的是提供有关植物修复的分子机制的宝贵见解,以及对各种污染物(例如重金属和准金属,异生物素,炸药,聚芳烃(PAHs),石油烃,农药,和纳米粒子。基因修复和纳米颗粒在增强植物修复技术中的作用也已在具有生物技术前景的相互关联的框架中进行了描述(例如,植物分子纳米耕作)。最后,在政策框架中讨论了关于在基因修复中优先使用农作物而不是非农作物超积累的政治辩论,转基因技术在植物技术中的局限性及其公众接受度问题

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