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植物有益细菌和丛枝菌根真菌在修复重金属污染盐渍土壤中的潜力。

Potential of plant beneficial bacteria and arbuscular mycorrhizal fungi in phytoremediation of metal-contaminated saline soils.

机构信息

Centre for Functional Ecology-Science for People & the Planet, Department of Life Sciences, University of Coimbra, 3000-456 Coimbra, Portugal.

Department of Environmental Sciences, Bharathiar University, Coimbatore 641046, India.

出版信息

J Hazard Mater. 2019 Nov 5;379:120813. doi: 10.1016/j.jhazmat.2019.120813. Epub 2019 Jun 22.

Abstract

Phytoremediation has been considered as a promising technique to decontaminate polluted soils. However, climatic stress particularly salinity, is a potential threat to soil properties and plant growth, thus restricting the employment of this technology. The aim of this study was to access the impact of microbial inoculation on phytoremediation of nickel (Ni) contaminated saline soils using Helianthus annuus. Salt resistant plant beneficial bacterium (PBB) Pseudomonas libanensis TR1 and arbuscular mycorrhizal fungus (AMF) Claroideoglomus claroideum BEG210 were used. Inoculation of P. libanensis alone or in combination with C. claroideum significantly enhanced plant growth, changed physiological status (e.g. electrolyte leakage, chlorophyll, proline and malondialdehyde contents) as well as Ni and sodium (Na) accumulation potential (e.g. uptake and translocation factor of Ni and Na) of H. annuus under Ni and salinity stress either alone or in combination. These results revealed that bioaugmentation of microbial strains may serve as a preferred strategy for improving phytoremediation of metal-polluted saline soils.

摘要

植物修复技术被认为是一种很有前途的污染土壤修复技术。然而,气候胁迫,特别是盐胁迫,是对土壤性质和植物生长的潜在威胁,从而限制了该技术的应用。本研究的目的是评估微生物接种对利用向日葵修复镍(Ni)污染盐渍土壤的影响。使用耐盐植物有益细菌(PBB)假单胞菌 TR1 和丛枝菌根真菌(AMF)Claroideoglomus claroideum BEG210。单独接种 P. libanensis 或与 C. claroideum 联合接种可显著提高植物的生长,改变其生理状态(例如电解质渗漏、叶绿素、脯氨酸和丙二醛含量),并提高向日葵在 Ni 和盐胁迫下单独或联合处理时对 Ni 和 Na 的积累潜力(如 Ni 和 Na 的吸收和转运因子)。这些结果表明,微生物菌株的生物强化可能是提高金属污染盐渍土壤植物修复的首选策略。

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