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Bioaugmentation with Petroleum-Degrading Consortia Has a Selective Growth-Promoting Impact on Crop Plants Germinated in Diesel Oil-Contaminated Soil

机译:石油降解联合体的生物强化对柴油污染油土中发芽的作物具有选择性的促进生长的作用

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摘要

Rhizoremediation is a complex type of green clean-up technology that involves both plants and the rhizosphere-associated microorganisms to decompose hazardous compounds. The success of the strategy strongly depends on plant tolerance towards the pollutant, as well as plant's interactions with the rhizospheric microbes. The microorganisms may be stimulated by the secreted root exudates, which results in an increased breakdown of contaminants in the rhizosphere. The main goal of this study was to establish a potential rhizoremediation combination for a diesel-polluted site. Inoculation of plant roots or seeds with indigenous rhizospheric populations is a common approach in the rhizoremediation. However, we introduced hydrocarbon-degrading consortia (M10, R3, and K52) that were previously isolated from crude oil-contaminated soil instead of indigenous microbes. Bioaugmentation with these petroleum degraders was applied to screen four high biomass crop species (Indian mustard, alfalfa, high erucic acid rapeseed, HEAR, and low erucic acid rapeseed, LEAR) for their tolerance towards diesel oil. At no pollution, a promoting effect of M10 bacteria could be observed on germination and root elongation of all plant species. Moreover, M10 consortiums increased the germination index at 6,000 mg diesel oil per kilogram dry soil in the case of Indian mustard, alfalfa, and HEAR. The latter species was found to increment its dry weight upon bioaugmentation with M10 bacteria and all diesel oil treatments (6,000 and 24,000 mg diesel oil per kilogram dry soil). The initial results indicate HEAR and the M10 bacterial consortium as a promising plant–microbe tandem for a long-term rhizoremediation process.Electronic supplementary materialThe online version of this article (doi:10.1007/s11270-013-1676-0) contains supplementary material, which is available to authorized users.
机译:根际修复是一种复杂的绿色清洁技术,涉及植物和与根际相关的微生物分解有害化合物。该策略的成功很大程度上取决于植物对污染物的耐受性以及植物与根际微生物的相互作用。分泌的根系分泌物可能会刺激微生物,从而导致根际中污染物的分解增加。这项研究的主要目标是为柴油污染场地建立潜在的根治组合。用根际根际种群接种植物根或种子是根际修复的一种常用方法。但是,我们引入了烃降解联合体(M10,R3和K52),该联合体先前是从原油污染的土壤中分离出来的,而不是从本地微生物中分离出来的。使用这些石油降解剂进行生物强化,以筛选四种高生物量作物品种(印度芥菜,苜蓿,高芥酸油菜籽HEAR和低芥酸油菜籽LEAR)对柴油的耐受性。在无污染的情况下,可以观察到M10细菌对所有植物物种的发芽和根伸长的促进作用。此外,在印度芥菜,苜蓿和HEAR的情况下,M10财团将发芽指数提高至每公斤旱田6,000 mg柴油。在使用M10细菌进行生物强化和所有柴油处理之后,发现后者的种类会增加其干重(每千克干土6,000和24,000 mg柴油)。初步结果表明,HEAR和M10细菌联合体是长期根际修复过程中很有希望的植物-微生物串联体。电子补充材料本文的在线版本(doi:10.1007 / s11270-013-1676-0)包含补充材料,可供授权用户使用。

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