Phytoremediation of organic pollutants using mycorrhizal plants: a new aspect of rhizosphere interactions

Agronomie Pub Date : 2003-07-01 DOI:10.1051/AGRO:2003021
E. Joner, C. Leyval
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引用次数: 91

Abstract

Phytoremediation as a means of cleaning up polluted soils has gained popularity during the last decade due to its convenience and low costs of installation and maintenance. When the target pollutant is biodegradable, this technology exploits the stimulating effect that roots have on microbial processes and physical/chemical modifications in the rhizosphere. Among the microorganisms that affect rhizosphere processes, symbiotic fungi forming mycorrhizas induce a series of changes in plant physiology, nutrient availability and microbial composition that may determine the outcome of a phytoremediation attempt. Beyond the rhizosphere, mycorrhizal hyphae act as the roots of the roots, and may thus extend the rhizosphere into the bulk soil by creating a new interface of soil-plant interactions; the hyphosphere. We here discuss some of the recent results on phytoremediation of organic pollutants with emphasis on processes in the mycorrhizosphere, and highlight future research priorities.
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利用菌根植物修复有机污染物:根际相互作用的一个新方面
植物修复作为一种清洁污染土壤的手段,由于其方便、安装和维护成本低,在过去十年中得到了广泛的应用。当目标污染物可生物降解时,该技术利用根对根际微生物过程和物理/化学修饰的刺激作用。在影响根际过程的微生物中,形成菌根的共生真菌会引起植物生理、养分有效性和微生物组成的一系列变化,这些变化可能决定植物修复尝试的结果。在根际之外,菌根菌丝充当根的根,因此可以通过创建土壤-植物相互作用的新界面将根际延伸到块状土壤中;hyphosphere。本文讨论了植物修复有机污染物的一些最新研究成果,重点讨论了菌根圈修复过程,并强调了未来的研究重点。
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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