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首页> 外文期刊>Environmental Science and Pollution Research >Bioaugmentation of polyethylene succinate-contaminated soil with Pseudomonas sp. AKS2 results in increased microbial activity and better polymer degradation
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Bioaugmentation of polyethylene succinate-contaminated soil with Pseudomonas sp. AKS2 results in increased microbial activity and better polymer degradation

机译:假单胞菌sp。的生物增强聚乙烯琥珀酸酯污染的土壤。 AKS2可提高微生物活性并改善聚合物降解

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摘要

Pseudomonas sp. AK.S2 isolated from soil degrades polyethylene succinate (PES) efficiently in the laboratory. However, this organism may not be able to degrade PES with similar efficiency in a natural habitat. Since in situ remediation is preferred for the effective removal of recalcitrant materials like plastic, in the current study, bioaugmentation potential of this organism was investigated. To investigate the potential of the AKS2 strain to bioaugment the PES-contaminated soil, a microcosm-based study was carried out wherein naturally attenuated, biostimulated, and AKS2-inoculated (bioaugmented) soil samples were examined for their ability to degrade PES. The results showed better degradation of PES by bioaugmented soil than other microcosms. Consistent with it, a higher number of PES-degrading organisms were found in the bioaugmented microcosm. The bioaugmented microcosm also exhibited a higher level of average well color development in BiOLOG ECO plate assay than the other two. The corresponding Shannon-Weaver index and Gini coefficient revealed a higher soil microbial diversity of bioaugmented microcosm than the others. This was further supported by community-level physiological profile of three different microcosms wherein we have observed better utilization of different carbon sources by bioaugmented microcosms. Collectively, these results demonstrate that bioaugmentation of PES-contaminated soil with AKS2 not only enhances polymer degradation but also increases microbial diversity. Bioaugmentation of soil with AKS2 enhances PES degradation without causing damage to soil ecology.Thus, Pseudomonas sp. AKS2 has the potential to be implemented as a useful tool for in situ bioremediation of PES.
机译:假单胞菌从土壤中分离出的AK.S2可在实验室中有效降解琥珀酸聚乙二醇酯(PES)。但是,这种生物可能无法在自然栖息地中以相似的效率降解PES。由于优选采用原位修复来有效去除顽固性材料(例如塑料),因此在当前研究中,对这种生物的生物增强潜力进行了研究。为了研究AKS2菌株对被PES污染的土壤进行生物增强的潜力,进行了基于微观的研究,其中检查了自然减毒,生物刺激和AKS2接种(生物增强)的土壤样品降解PES的能力。结果表明,与其他微观世界相比,生物强化土壤对PES的降解效果更好。与之一致的是,在生物增强的微观世界中发现了更多的可降解PES的生物。在BiOLOG ECO平板测定中,生物增强的微观世界还表现出比其他两个更高的平均孔颜色显影水平。相应的Shannon-Weaver指数和Gini系数显示,生物强化微观世界的土壤微生物多样性高于其他微生物。三种不同微观世界的社区水平生理特征进一步支持了这一点,其中我们观察到生物强化微观世界更好地利用了不同的碳源。总体而言,这些结果表明,用AKS2对PES污染的土壤进行生物强化不仅可以提高聚合物降解能力,还可以增加微生物多样性。用AKS2对土壤进行生物强化可增强PES降解,而不会损害土壤生态系统。 AKS2有潜力被用作PES原位生物修复的有用工具。

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