Critical Reviews in Environmental Science and Technology · 2012 · 239 citations · 149 references
Plant Nutrient AcquisitionHuman ActivitiesEngineeringEnvironmental EngineeringArbuscular Mycorrhizal FungiBioremediationPhytoremediationEnvironmental RemediationMetal ContaminationMicrobial EcologyEnvironmental MicrobiologyMetal ToxicityMicrobiologyMycelial InteractionMedicine
Human activities generate wastes, some of which contain large amounts of heavy metals/metalloids that could enter natural ecosystems and alter the activities and functioning of soil micro- and macroorganisms. Microorganisms can adapt/resist to metal stress, and some of them are able to promote the plants establishment and therefore the phytoremediation process. In this context, the use of arbuscular mycorrhizal fungi (AMF), and their role in phytoremediation, has emerged as a new and interesting choice. In addition to AMF's well-known contribution to plant nutrient acquisition and growth, these fungi develop diverse mechanisms that encourage plants to grow in soils with high toxic metals concentrations. The authors are concerned about the AMF metal tolerance mechanisms and its role in the promotion of in phytoremediation processes.
149
Cellular mechanisms for heavy metal detoxification and tolerance
J. L. Hall · Journal of Experimental Botany · 2002 · 2.8K citations · Full text
A fern that hyperaccumulates arsenic
Q. Lena, Kenneth M. Komar, Cong Tu et al. · Nature · 2001 · 1.8K citations · Full text
Biology, Engineering, Botany +8