PHYTOREMEDIATION.

D. E. Salt, R. D. Smith, I. Raskin
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引用次数: 10

Abstract

Contaminated soils and waters pose a major environmental and human health problem, which may be partially solved by the emerging phytoremediation technology. This cost-effective plant-based approach to remediation takes advantage of the remarkable ability of plants to concentrate elements and compounds from the environment and to metabolize various molecules in their tissues. Toxic heavy metals and organic pollutants are the major targets for phytoremediation. In recent years, knowledge of the physiological and molecular mechanisms of phytoremediation began to emerge together with biological and engineering strategies designed to optimize and improve phytoremediation. In addition, several field trials confirmed the feasibility of using plants for environmental cleanup. This review concentrates on the most developed subsets of phytoremediation technology and on the biological mechanisms that make phytoremediation work.

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植物修复。
受污染的土壤和水体构成了重大的环境和人类健康问题,新兴的植物修复技术可以部分解决这一问题。这种具有成本效益的植物修复方法利用了植物从环境中浓缩元素和化合物以及代谢其组织中各种分子的卓越能力。有毒重金属和有机污染物是植物修复的主要目标。近年来,关于植物修复的生理和分子机制的知识开始出现,旨在优化和改进植物修复的生物和工程策略也开始出现。此外,几次实地试验证实了利用植物进行环境清理的可行性。本文综述了植物修复技术的最新进展以及植物修复的生物学机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CIRCADIAN RHYTHMS IN PLANTS. MOLECULAR ENGINEERING OF C4 PHOTOSYNTHESIS. ISOPRENE EMISSION FROM PLANTS. CHLAMYDOMONAS AS A MODEL ORGANISM. THE PLASTID DIVISION MACHINE.
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