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接种柴油降解及植物促生细菌菌株后根际环境中柴油降解的增强

Enhanced Degradation of Diesel in the Rhizosphere of after Inoculation with Diesel-Degrading and Plant Growth-Promoting Bacterial Strains.

作者信息

Balseiro-Romero María, Gkorezis Panagiotis, Kidd Petra S, Vangronsveld Jaco, Monterroso Carmen

出版信息

J Environ Qual. 2016 May;45(3):924-32. doi: 10.2134/jeq2015.09.0465.

DOI:10.2134/jeq2015.09.0465
PMID:27136159
Abstract

The association of plants and rhizospheric bacteria provides a successful strategy to clean up contaminated soils. The purpose of this work was to enhance diesel degradation in rhizosphere by inoculation with selected bacterial strains: a diesel degrader (D), plant growth-promoting (PGP) strains, or a combination (D+PGP). Plants were set up in pots with the A or B horizon of an umbric Cambisol (A and B) spiked with diesel (1.25%, w/w). After 1 mo, the dissipation of diesel range organics (DRO) with respect to = 0 (i.e., 1 wk after preparing the pots with the seedlings) concentration was significantly higher in inoculated than in noninoculated (NI) pots: The highest DRO losses were found in A D+PGP pots (close to 15-20% higher than NI) and in B D pots (close to 10% higher). The water-extractable DRO fraction was significantly higher at = 30 d (15-25%) compared with = 0 (<5%), probably due to the effects of plant root exudates and biosurfactants produced by the degrader strain. The results of this experiment reflect the importance of the partnerships between plants and bacterial inoculants and demonstrate the relevance of the effect of bacterial biosurfactants and plant root exudates on contaminant bioavailability, a key factor for enhancing diesel rhizodegradation. The association of lupine with D and PGP strains resulted in a promising combination for application in the rhizoremediation of soils with moderate diesel contamination.

摘要

植物与根际细菌的联合为清理受污染土壤提供了一种成功的策略。这项工作的目的是通过接种选定的细菌菌株来增强根际中的柴油降解:一种柴油降解菌(D)、促进植物生长(PGP)的菌株或两者的组合(D + PGP)。将植物种植在装有添加了柴油(1.25%,w/w)的暗色始成土A层或B层(A和B)的花盆中。1个月后,接种花盆中柴油范围有机物(DRO)相对于t = 0(即种植幼苗的花盆制备后1周)浓度的消散显著高于未接种(NI)的花盆:DRO损失最高的是A层D + PGP花盆(比NI高近15 - 20%)和B层D花盆(比NI高近10%)。与t = 0(<5%)相比,在t = 30 d时可水提取的DRO部分显著更高(15 - 25%),这可能是由于植物根系分泌物和降解菌株产生的生物表面活性剂的作用。该实验结果反映了植物与细菌接种剂之间伙伴关系的重要性,并证明了细菌生物表面活性剂和植物根系分泌物对污染物生物有效性的影响的相关性,这是增强柴油根际降解的关键因素。羽扇豆与D和PGP菌株的联合为在中度柴油污染土壤的根际修复中应用提供了一种有前景的组合。

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