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首页> 外文期刊>International Journal of Phytoremediation >Isolation of the PCB-degrading bacteria Mesorhizobium sp ZY1 and its combined remediation with Astragalus sinicus L. for contaminated soil
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Isolation of the PCB-degrading bacteria Mesorhizobium sp ZY1 and its combined remediation with Astragalus sinicus L. for contaminated soil

机译:多氯联苯降解细菌Mesorhizobium sp ZY1的分离及其与黄芪的联合修复以污染土壤

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摘要

A bacterial strain ZY1 capable of utilizing PCBs as its carbon source was isolated from the root nodules of Chinese milk vetch (Astragalus sinicus L.). The strain was identified as Mesorhizobium sp. according to its physiological-biochemical properties and the analysis of its 16S rRNA gene sequence. When the initial OD600 was 0.15, 62.7% of 15 mg L-1 3,3',4,4'-TCB in a liquid culture was degraded by Mesorhizobium sp. ZY1 within 10 days. Mesorhizobium sp. ZY1 also greatly increased the biotransformation of soil PCBs. Pot experiments indicated that the soil PCB concentrations of a single incubation of strain ZY1 (R) and a single planting of A. sinicus (P) decreased by 20.5% and 23.0%, respectively, and the concentration of PCBs in soil treated with A. sinicus and strain ZY1 decreased by 53.1%. We also observed that A. sinicus-Mesorhizobium sp. ZY1 treatment (PR) improved plant biomass and the concentration of PCBs in plants compared with a single A. sinicus planting treatment (P). The results suggest that the synergistic association between A. sinicus and PCBs-degrading Mesorhizobium sp. ZY1 can stimulate the phytoextraction of PCBs and the rhizosphere microflora to degrade PCBs, and might be a promising bioremediation strategy for PCB-contaminated soil.
机译:从紫云英(Astragalus sinicus L.)的根瘤中分离出一种能够利用多氯联苯作为碳源的细菌菌株ZY1。该菌株被鉴定为中生根瘤菌。根据其生理生化特性和对其16S rRNA基因序列的分析。当初始OD600为0.15时,液体培养物中15mg L-1 3,3',4,4'-TCB的62.7%被中生根瘤菌降解。 ZY1在10天内。中生根瘤菌ZY1还大大增加了土壤多氯联苯的生物转化。盆栽试验表明,单株ZY1(R)孵育和单株中华按蚊(P)的土壤PCB浓度分别降低了20.5%和23.0%,用A处理的土壤中PCBs的浓度。窦和菌株ZY1下降了53.1%。我们还观察到中华曲霉Mesorhizobium sp。与单一的A. sinicus种植处理(P)相比,ZY1处理(PR)改善了植物的生物量和PCB中PCBs的浓度。结果表明,中华曲霉和多氯联苯降解中生根瘤菌之间的协同关联。 ZY1可以刺激多氯联苯的植物提取和根际微生物区系降解多氯联苯,并且可能是一种有前途的生物修复策略,以处理被多氯联苯污染的土壤。

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