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Sb(Ⅲ)-resistance mechanisms of a novel bacterium from non-ferrous metal tailings

机译:非黑色金属尾矿新型细菌的Sb(Ⅲ)-Resistance机制

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摘要

Understanding the mechanism(s) of microbial resistance to antimony (Sb) is critical in the bioremediation of Sb polluted environments. Here a novel bacterium (Acinetobacter sp. JH7) isolated from mine tailings decreased the Microtox toxicity of a Sb(III)-containing medium. DNA sequencing and physiological testing were employed for the identification and characterization of strain JH7. Following a batch experiment, Fourier transform infrared spectroscopy (FTIR) and antimony speciation analyses determined the adsorption and oxidation of antimony. Analyses of Sb(III) distribution revealed that extracellular polymeric substances and cell walls inhibited Sb(III) entry into JH7 cells. FTIR studies indicated that key functional groups including -OH, C-N, and C-O likely participated in Sb(III) biosorption. Isothermal and kinetic studies revealed that Sb(III) sorption to viable JH7 cells fitted the Langmuir model (R-2 = 0.99) and could be described by pseudo-second order kinetics (R-2 = 0.99). Furthermore, the increase of anti-oxidative enzymatic activity of JH7 enhanced the intracellular detoxification of Sb(III), which would indirectly contribute to the Sb(III) resistance ability of strain JH7. Our results indicate that biosorption and ROS oxidation of Sb(III) were likely responsible for the decreased toxicity of Sb. The greater understanding how Acinetobacter sp. JH7 lowers the environmental Sb(III) toxicity could provide a basis for future research and subsequent development of technologies for the remediation of Sb contaminated sites.
机译:理解微生物抗性对锑(SB)的机制在SB污染环境的生物修复中是至关重要的。这里是从矿山尾矿中分离的新细菌(Acinetobacter Sp.JH7)降低了Sb(III)介质的微量毒性毒性。使用DNA测序和生理检测用于菌株JH7的鉴定和表征。在批量实验之后,傅里叶变换红外光谱(FTIR)和锑物质分析确定了锑的吸附和氧化。 Sb(III)分布的分析显示,细胞外聚合物物质和细胞壁抑制Sb(III)进入JH7细胞。 FTIR研究表明,包括-OH,C-N和C-O的关键官能团可能参与SB(III)生物吸附。等温和动力学研究表明,Sb(III)对可行的JH7细胞吸附拟合Langmuir模型(R-2 = 0.99),可以通过伪二次阶动力学描述(R-2 = 0.99)。此外,JH7的抗氧化酶活性的增加增强了Sb(III)的细胞内解毒,其间接有助于菌株JH7的Sb(III)抗性能力。我们的结果表明,Sb(III)的生物吸附和ROS氧化可能对SB的毒性降低负责。更越大的了解Acinetobacter sp如何。 JH7降低了环境SB(III)毒性可以为未来的研究和随后开发用于修复SB受污染的地点的技术提供依据。

著录项

  • 来源
    《Ecotoxicology and Environmental Safety》 |2019年第12期|109773.1-109773.9|共9页
  • 作者单位

    China Univ Geosci Beijing Sch Water Resources & Environm Beijing 100083 Peoples R China;

    China Univ Geosci Beijing Sch Water Resources & Environm Beijing 100083 Peoples R China|McGill Univ Dept Nat Resource Sci 21111 Lakeshore Dr Ste Anne De Bellevue PQ H9X 3V9 Canada;

    China Univ Geosci Beijing Sch Water Resources & Environm Beijing 100083 Peoples R China|Univ Pau & Pays Adour Equipe Environm & Microbiol MELODY Grp E2S UPPA IPREM UMR CNRS 5254 BP 1155 F-64013 Pau France;

    China Univ Geosci Beijing Sch Water Resources & Environm Beijing 100083 Peoples R China;

    China Univ Geosci Beijing Sch Water Resources & Environm Beijing 100083 Peoples R China;

    China Univ Geosci Beijing Sch Water Resources & Environm Beijing 100083 Peoples R China;

    Hebei Univ Dept Basic Med Baoding 071002 Peoples R China;

    Eotvos Lorand Univ Sino Hungarian Joint Res Lab Environm Sci & Hlth Pazmany Peter Stny 1-A H-1117 Budapest Hungary;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acinetobacter; Adsorption; Antimony; Oxidation; Toxicology;

    机译:acinetobacter;吸附;锑;氧化;毒理学;
  • 入库时间 2022-08-18 21:49:03

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