Ashraf Muhammad Arslan, Hussain Iqbal, Rasheed Rizwan, Iqbal Muhammad, Riaz Muhammad, Arif Muhammad Saleem
Department of Botany, Government College University Faisalabad, Faisalabad 38000, Pakistan.
Department of Botany, Government College University Faisalabad, Faisalabad 38000, Pakistan; Department of Environmental Life Sciences, Graduate School of Life Sciences, Tohoku University, Sendai 980-8577, Japan.
J Environ Manage. 2017 Aug 1;198(Pt 1):132-143. doi: 10.1016/j.jenvman.2017.04.060. Epub 2017 Apr 26.
Contamination of agricultural soils with trace metals present lethal consequences in terms of diverse ecological and environmental problems that entail entry of metal in food chain, soil deterioration, plant growth suppression, yield reduction and alteration in microbial community. Metal polluted soils have become a major concern for scientists around the globe. Phytoremediation involves the hyperaccumulation of metals in different plant parts. Phytoremediation of metals from polluted soils could be enhanced through inoculation with metal resistant plant growth promoting (PGP) bacteria. These PGP bacteria not only promote plant growth but also enhance metal uptake by plants. There are a number of reports in the literature where PGP bacterial inoculation improves metal accumulation in different plant parts without influencing plant growth. Therefore, there is a need to select PGP bacterial strains which possess the potential to improve plant growth as well as expedite the phytoremediation of metals. In this review, we have discussed the mechanisms possessed by PGP bacteria to promote plant growth and phytoremediation of metals. The central part of this review deals with the recent advances in microbial assisted-phytoremediation of metals.
农业土壤中的微量金属污染会引发各种生态和环境问题,带来致命后果,这些问题包括金属进入食物链、土壤退化、植物生长受抑制、产量降低以及微生物群落改变。金属污染土壤已成为全球科学家主要关注的问题。植物修复涉及金属在植物不同部位的超积累。通过接种抗金属的植物生长促进(PGP)细菌,可以增强从污染土壤中进行植物修复去除金属的效果。这些PGP细菌不仅促进植物生长,还能增强植物对金属的吸收。文献中有许多报道称,接种PGP细菌可提高不同植物部位的金属积累量,且不影响植物生长。因此,有必要筛选出具有促进植物生长以及加速金属植物修复潜力的PGP细菌菌株。在本综述中,我们讨论了PGP细菌促进植物生长和金属植物修复的机制。本综述的核心部分涉及微生物辅助金属植物修复的最新进展。