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嗜麦芽窄食单胞菌通过表面吸附和细胞内积累协同作用去除铀:性能与机制

Synergy of surface adsorption and intracellular accumulation for removal of uranium with Stenotrophomonas sp: Performance and mechanisms.

作者信息

Hu Zhongqiang, Zhou Zhongkui, Zhou Yaoyu, Zheng Lili, Guo Jianping, Liu Yong, Sun Zhanxue, Yang Zhihui, Yu Xiaoxia

机构信息

State Key Laboratory of Nuclear Resources and Environment, East China University of Technology, Nanchang 330013, Jiangxi, China; School of Water Resources and Environmental Engineering, East China University of Technology, Nanchang 330013, Jiangxi, China.

State Key Laboratory of Nuclear Resources and Environment, East China University of Technology, Nanchang 330013, Jiangxi, China; School of Water Resources and Environmental Engineering, East China University of Technology, Nanchang 330013, Jiangxi, China.

出版信息

Environ Res. 2023 Mar 1;220:115093. doi: 10.1016/j.envres.2022.115093. Epub 2022 Dec 24.

Abstract

Uranium is well-known to have serious adverse effects on the ecological environment and human health. Bioremediation stands out among many remediation methods owing to its being economically feasible and environmentally friendly. This study reported a great promising strategy for eliminating uranium by Stenotrophomonas sp. CICC 23833 in the aquatic environment. The bacterium demonstrated excellent uranium adsorption capacity (q = 392.9 mg/g) because of the synergistic effect of surface adsorption and intracellular accumulation. Further analysis revealed that hydroxyl, carboxyl, phosphate groups and proteins of microorganisms were essential in uranium adsorption. Intracellular accumulation was closely related to cellular activity, and the efficiency of uranium processing by the permeabilized bacterial cells was significantly improved. In response to uranium stress, the bacterium was found to release multiple ions in conjunction with uranium adsorption, which facilitates the maintenance of bacterial life activities and the conversion of uranyl to precipitates. These above results indicated that Stenotrophomonas sp. Had great potential application value for the remediation of uranium.

摘要

众所周知,铀对生态环境和人类健康具有严重的不利影响。生物修复在众多修复方法中脱颖而出,因其经济可行且环境友好。本研究报道了嗜麦芽窄食单胞菌(Stenotrophomonas sp.)CICC 23833在水生环境中去除铀的极具前景的策略。由于表面吸附和细胞内积累的协同作用,该细菌表现出优异的铀吸附能力(q = 392.9 mg/g)。进一步分析表明,微生物的羟基、羧基、磷酸基团和蛋白质在铀吸附中至关重要。细胞内积累与细胞活性密切相关,且经通透处理的细菌细胞处理铀的效率显著提高。在应对铀胁迫时,发现该细菌在吸附铀的同时释放多种离子,这有助于维持细菌生命活动以及将铀酰转化为沉淀物。上述结果表明,嗜麦芽窄食单胞菌在铀修复方面具有巨大的潜在应用价值。

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