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Plant-associated bacteria and their role in the success or failure of metal phytoextraction projects: first observations of a field-related experiment

机译:与植物相关的细菌及其在金属植物提取项目成败中的作用:与田间实验相关的初步观察

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摘要

Phytoextraction has been reported as an economically and ecologically sound alternative for the remediation of metal-contaminated soils. Willow is a metal phytoextractor of interest because it allows to combine a gradual contaminant removal with production of biomass that can be valorized in different ways. In this work two willow clones growing on a metal-contaminated site were selected: ‘Belgisch Rood’ (BR) with a moderate metal extraction capacity and ‘Tora’ (TO) with a twice as high metal accumulation. All cultivable bacteria associated with both willow clones were isolated and identified using 16SrDNA ARDRA analysis followed by 16SrDNA sequencing. Further all isolated bacteria were investigated for characteristics that might promote plant growth (production of siderophores, organic acids and indol acetic acid) and for their metal resistance. The genotypic and phenotypic characterization of the isolated bacteria showed that the TO endophytic bacterial population is more diverse and contains a higher percentage of metal-resistant plant growth promoting bacteria than the endophytic population associated with BR. We hypothesize that the difference in the metal accumulation capacity between BR and TO clones might be at least partly related to differences in characteristics of their associated bacterial population.
机译:据报导,植物提取是修复金属污染土壤的一种经济和生态上合理的选择。柳树是人们关注的一种金属植物提取物,因为它可以将污染物的逐步去除与生物质的生产结合起来,而生物质的生产可以以不同的方式进行增值。在这项工作中,选择了两个在金属污染位点上生长的柳树克隆:具有中等金属提取能力的“ Belgisch Rood”(BR)和具有较高金属积累量两倍的“ Tora”(TO)。与两个柳树克隆相关的所有可培养细菌均已分离,并使用16SrDNA ARDRA分析和16SrDNA测序进行了鉴定。此外,还对所有分离出的细菌进行了研究,以研究可能促进植物生长的特性(铁载体,有机酸和吲哚乙酸的产生)及其金属抗性。分离细菌的基因型和表型特征表明,与BR相关的内生菌群,TO内生菌群更加多样化,并且包含更高的金属抗性植物生长促进细菌百分比。我们假设BR和TO克隆之间金属积累能力的差异可能至少部分与其相关细菌种群特征的差异有关。

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