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Influence of metal resistant-plant growth-promoting bacteria on the growth of Ricinus communis in soil contaminated with heavy metals

机译:金属抗性植物生长细菌对重金属污染土壤中蓖麻的生长的影响

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摘要

The metal resistant-plant growth-promoting bacterial (PGPB) strains PsM6 and PjM15 isolated from a serpentine soil were characterized as Pseudomonas sp. and Pseudomonas jessenii, respectively, on the basis of their morphological, physiological, biochemical characteristics and 16S rDNA sequences. Assessment of plant growth-promoting parameters revealed the intrinsic ability of the strains for the utilization of 1-aminocyclopropane-1-carboxylic acid as the sole N source, solubilization of insoluble phosphate and production of indole-3-acetic acid (IAA). Further, a pot experiment was conducted to elucidate the effects of inoculating metal resistant PGPB on the plant growth and the uptake of Ni, Cu and Zn by Ricinus communis. Inoculation of Pseudomonas sp. PsM6 or P. jessenii PjM15 increased the shoot and root biomass of R. communis grown in non-contaminated and contaminated soil. However, the maximum biomass was observed in the plants inoculated with strain PjM15. This effect can be attributed to the solubilization of phosphate and production of IAA. Inoculation of Pseudomonas sp. PsM6 and PjM15 did not greatly alter the organ metal concentrations except Zn which concentration was higher in root, stem and leaf of inoculated plants. The results of metal extraction with PGPB strains showed that PsM6 was more efficient at solubilizing Zn than PjM15, and that PjM15 was better at solubilising Ni and Cu than PsM6. Owing to its wide action spectrum, the metal resistant PGPB could serve as an effective metal sequestering and growth-promoting bioinoculant for plants in metal-stressed soil. The present study has provided a new insight into the phytoremediation of metal-contaminated soil.
机译:从蛇形土壤中分离出的金属抗植物生长促进细菌(PGPB)菌株PsM6和PjM15的特征为假单胞菌(Pseudomonas sp。)。根据其形态,生理学,生化特性和16S rDNA序列分别鉴定了耶氏假单胞菌和耶氏假单胞菌。对植物生长促进参数的评估揭示了菌株利用1-氨基环丙烷-1-羧酸作为唯一氮源,增溶不溶性磷酸盐和生产吲哚-3-乙酸(IAA)的内在能力。此外,还进行了盆栽试验,以阐明接种抗金属PGPB对植物生长以及普通蓖麻对Ni,Cu和Zn吸收的影响。接种假单胞菌。 PsM6或P. jessenii PjM15增加了在未受污染和污染的土壤中生长的Comm。R. com。的芽和根生物量。但是,在接种菌株PjM15的植物中观察到最大的生物量。该作用可归因于磷酸盐的增溶和IAA的产生。接种假单胞菌。 PsM6和PjM15并未显着改变器官金属的浓度,但Zn在接种植物的根,茎和叶中含量较高。用PGPB菌株提取金属的结果表明,PsM6溶解锌的效率高于PjM15,而PjM15溶解镍和铜的溶解能力优于PsM6。由于其广泛的作用谱,抗金属PGPB可以作为有效的金属螯合和促进金属胁迫土壤中植物生长的生物螯合剂。本研究为金属污染土壤的植物修复提供了新的见识。

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