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Dynamism of PGPR in bioremediation and plant growth promotion in heavy metal contaminated soil

机译:PGPR在重金属污染土壤中的生物修复和植物生长促进中的作用

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Heavy metal contamination, particularly of cultivable lands, is a matter of concern. Bioremediation helps in reversing such contamination to certain extent. Here, we report isolation, polyphasic identification and the role of Siderophore producing rhizobacteria Alcaligenes feacalis RZS2 and Pseudomonas aeruginosa RZS3 in bioremediation of heavy metal contaminated soil and plant growth promotion activity in such contaminated soil. Siderophore produced by A. feacalis RZS2 and P. aeruginosa RZS3 strains chelated various heavy metal ions like MnCl2 center dot 4H(2)O, NiCl2 center dot 6H(2)O, ZnCl2, CuCl2 and CoCl2 other than FeCl3 center dot 6H(2)O at batch scale. Their bioremediation potential was superior over the chemical ion chelators like EDTA and citric acid. These isolates also promoted growth of wheat and peanut seeds sown in heavy metal contaminated soil. Effective root colonizing ability of these isolates was observed in wheat and peanut plants.
机译:重金属污染,特别是耕地的重金属污染是一个令人关注的问题。生物修复有助于在一定程度上逆转此类污染。在这里,我们报告分离,多相鉴定和铁载体产生根瘤菌产碱菌RZS2和铜绿假单胞菌RZS3在重金属污染土壤的生物修复中以及在这种污染土壤中促进植物生长的作用。粪肠球菌RZS2和铜绿假单胞菌RZS3菌株产生的铁载体螯合了各种重金属离子,例如MnCl2中心点4H(2)O,NiCl2中心点6H(2)O,ZnCl2,CuCl2和CoCl2而不是FeCl3中心点6H(2批量生产)它们的生物修复潜力优于EDTA和柠檬酸等化学离子螯合剂。这些分离株还促进了在重金属污染土壤中播种的小麦和花生种子的生长。在小麦和花生植物中观察到这些分离物的有效根定殖能力。

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