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- W2964132000 abstract "Abstract The ever-increasing development, industrialization, and anthropogenic activities are an indiscriminate source of heavy metal pollution in the environment. These metals have negative impacts on humans, animals, and plants, thus their remediation is crucial. The remediation of heavy metals from the contaminated sites using conventional methods is costly and environmentally destructive. Phytoremediation is an eco-friendly, cost-effective, and promising technique that employs various hyperaccumulator plants to remediate contaminants from the environment (soil, surface and ground water). However, under high metal stress conditions phytoremediation efficiency of plants is greatly hindered. Plant growth promoting rhizobacteria (PGPR) can enhance the efficiency of the phytoremediation process under stress conditions. These bacteria efficiently convert the toxic metals into nontoxic and bioavailable forms. Moreover, the PGPR inhabit traits such as nitrogen fixation, iron sequestration, phosphate solubilization, hydrogen cyanide production, antibiotic synthesis, and 1-aminocyclopropane-1-carboxylic acid, which may enhance the plant biomass and improve plant growth, thereby assisting phytoremediation. This chapter highlights the potential of PGPR in enhanced phytoremediation of trace metals in contaminated soils; the chapter also illuminates the modes of plant–microbe interactions." @default.
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- W2964132000 date "2019-01-01" @default.
- W2964132000 modified "2023-09-26" @default.
- W2964132000 title "Role of plant-associated bacteria in phytoremediation of trace metals in contaminated soils" @default.
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- W2964132000 doi "https://doi.org/10.1016/b978-0-12-818258-1.00012-1" @default.
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