Weyens Nele, van der Lelie Daniel, Taghavi Safiyh, Vangronsveld Jaco
Hasselt University, Department of Environmental Biology, Diepenbeek, Belgium.
Curr Opin Biotechnol. 2009 Apr;20(2):248-54. doi: 10.1016/j.copbio.2009.02.012. Epub 2009 Mar 25.
A promising field to exploit plant-endophyte partnerships is the remediation of contaminated soils and (ground) water. Many plant growth promoting endophytes can assist their host plant to overcome contaminant-induced stress responses, thus providing improved plant growth. During phytoremediation of organic contaminants, plants can further benefit from endophytes possessing appropriate degradation pathways and metabolic capabilities, leading to more efficient contaminant degradation and reduction of both phytotoxicity and evapotranspiration of volatile contaminants. For phytoremediation of toxic metals, endophytes possessing a metal-resistance/sequestration system can lower metal phytotoxicity and affect metal translocation to the above-ground plant parts. Furthermore, endophytes that can degrade organic contaminants and deal with or, even better, improve extraction of the metals offer promising ways to improve phytoremediation of mixed pollution.
利用植物与内生菌共生关系的一个有前景的领域是对受污染土壤和(地下)水的修复。许多促进植物生长的内生菌能够帮助其宿主植物克服污染物诱导的应激反应,从而促进植物生长。在有机污染物的植物修复过程中,植物可以进一步受益于具有适当降解途径和代谢能力的内生菌,从而实现更高效的污染物降解,并降低挥发性污染物的植物毒性和蒸发散。对于有毒金属的植物修复,具有金属抗性/螯合系统的内生菌可以降低金属的植物毒性,并影响金属向地上植物部分的转运。此外,能够降解有机污染物并处理甚至更好地促进金属提取的内生菌,为改善混合污染的植物修复提供了有前景的方法。