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在耐辐射球菌 R1 中共表达 YieF 和 PhoN 可通过减少铬的干扰来提高铀的生物沉淀。

Co-expression of YieF and PhoN in Deinococcus radiodurans R1 improves uranium bioprecipitation by reducing chromium interference.

机构信息

Ministry of Education Key Laboratory of Cell Activities and Stress Adaptations, School of Life Sciences, Lanzhou University, Tianshui South Road #222, Lanzhou, Gansu 730000, PR China.

Department of Development Biology Sciences, School of Life Sciences, Lanzhou University, Tianshui South Road #222, Lanzhou, Gansu 730000, PR China.

出版信息

Chemosphere. 2018 Nov;211:1156-1165. doi: 10.1016/j.chemosphere.2018.08.061. Epub 2018 Aug 14.

Abstract

Overexpression of the enzyme phosphatase (PhoN/PhoK) in the radiation-resistant bacterium Deinococcus radiodurans could be an efficient strategy for uranium remediation. However, the presence of other metals in nuclear wastes often interferes with uranium bioprecipitation. In our study, the uranium-precipitating ability of the PhoN-expressing D. radiodurans strain (Deino-phoN) significantly decreased by 45.4% in 13 h in the presence of chromium (VI); however, it was partially recovered after supplementation with chromium (III). Therefore, the reduction of chromium (VI) to chromium (III) was obtained by the co-expression of the YieF protein and PhoN in D. radiodurans (Deino-phoN-yieF). As a result, an increase in the chromium (VI) reduction (25.1%) rate was observed in 24 h. Furthermore, uranium precipitation also increased by 28.0%. For the decontamination of groundwater, we immobilized Deino-phoN-yieF cells using Polyvinyl alcohol (PVA)-sodium alginate (SA) beads, followed by incubation in a bioreactor. Approximately 99% of chromium (VI) and uranium (VI) was removed after 4 continuous cycles operated for a period of over 20 days at room temperature (25 °C). Therefore, Deino-phoN-yieF could be used as a potential biological agent for mixed radioactive nuclear waste remediation.

摘要

在抗辐射细菌 Deinococcus radiodurans 中过度表达酶磷酸酶(PhoN/PhoK)可能是铀修复的有效策略。然而,核废料中存在的其他金属经常干扰铀的生物沉淀。在我们的研究中,PhoN 表达的 D. radiodurans 菌株(Deino-phoN)在存在六价铬的情况下,铀沉淀能力在 13 小时内显著下降了 45.4%;然而,在补充三价铬后,它部分得到了恢复。因此,通过在 D. radiodurans 中共同表达 YieF 蛋白和 PhoN,实现了六价铬向三价铬的还原(Deino-phoN-yieF)。结果,在 24 小时内观察到六价铬还原(25.1%)速率增加。此外,铀沉淀也增加了 28.0%。为了地下水的净化,我们使用聚乙烯醇(PVA)-海藻酸钠(SA)珠固定 Deino-phoN-yieF 细胞,然后在生物反应器中进行孵育。在室温(25°C)下连续运行 4 个周期超过 20 天后,去除了约 99%的六价铬和铀(VI)。因此,Deino-phoN-yieF 可作为混合放射性核废料修复的潜在生物剂。

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