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Characterization of arsenite-oxidizing bacteria isolated from arsenic-contaminated groundwater of West Bengal

机译:从西孟加拉邦受砷污染的地下水中分离出的砷氧化细菌的表征

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摘要

Nine arsenic (As)-resistant bacterial strains isolated from As-rich groundwater samples of West Bengal were characterized to elucidate their potential in geomicrobial transformation and bioremediation aspects. The 16S rRNA gene-based phylogenetic analysis revealed that the strains were affiliated with genera Actinobacteria, Microbacterium, Pseudomonas and Rhizobium. The strains exhibited high resistance to As [Minimum inhibitory concentration (MIC) ≥ 10 mM As~(3+) and MIC ≥ 450 mM As~(5+)] and other heavy metals, e.g., Cu~(2+), Cr~(2+), Ni~(2+), etc. (MIC ≥ 2 mM) as well as As transformation (As~(3+) oxidation and As~(5+) reduction) capabilities. Their ability to utilize diverse carbon source(s) including hydrocarbons and different alternative electron acceptor(s) (As~(5+), SO_4~(2-), S_2O_3~(2-), etc.) during anaerobic growth was noted. Growth at wide range of pH, temperature and salinity, production of siderophore and biorilm were observed. Together with these, growth pattern and transformation kinetics indicated a high As~(3+) oxidation activity of the isolates Rhizobium sp. CAS934i, Microbacterium sp. CAS905i and Pseudomonas sp. CAS912i. A positive relation between high As~(3+) resistance and As~(3+) oxidation and the supportive role of As~(3+) in bacterial growth was noted. The results highlighted As~(3+) oxidation process and metabolic repertory of strains indigenous to contaminated groundwater and indicates their potential in As~(3+) detoxification. Thus, such metabolically well equipped bacterial strains with highest As~(3+) oxidation activities may be used for bioremediation of As contaminated water and effluents in the near future.
机译:从西孟加拉邦富含As的地下水样品中分离出的9种抗砷(As)细菌菌株经过表征,以阐明其在地球微生物转化和生物修复方面的潜力。基于16S rRNA基因的系统发育分析表明,该菌株与放线菌属,微细菌属,假单胞菌属和根瘤菌属有关。菌株表现出对As [最小抑菌浓度(MIC)≥10 mM As〜(3+)和MIC≥450 mM As〜(5+)]和其他重金属(例如Cu〜(2 +),Cr 〜(2 +),Ni〜(2+)等(MIC≥2 mM)以及As转化(As〜(3+)氧化和As〜(5+)还原)功能。注意到他们在厌氧生长过程中利用多种碳源的能力,包括碳氢化合物和不同的替代电子受体(As〜(5 +),SO_4〜(2-),S_2O_3〜(2-)等)。 。观察到在广泛的pH,温度和盐度下生长,铁载体和生物素的产生。连同这些,生长模式和转化动力学表明分离株根瘤菌具有较高的As〜(3+)氧化活性。 CAS934i,微细菌菌种。 CAS905i和假单胞菌sp。 CAS912i。指出了高As〜(3+)抗性和As〜(3+)氧化与As〜(3+)在细菌生长中的支持作用之间呈正相关。结果突出显示了被污染的地下水固有菌株的As〜(3+)氧化过程和代谢库,并表明了它们在As〜(3+)排毒中的潜力。因此,具有最高As〜(3+)氧化活性的这种代谢良好的装备良好的细菌菌株可在不久的将来用于As污染的水和废水的生物修复。

著录项

  • 来源
    《Journal of Environmental Science and Health》 |2014年第14期|1481-1492|共12页
  • 作者单位

    Department of Biotechnology, Indian Institute of Technology, Kharagpur, India;

    Department of Biotechnology, Indian Institute of Technology, Kharagpur, India,Department of Molecular and Medical Pharmacology, David Geffen School of Medicine at UCLA, University of California, Los Angeles, CA, USA;

    Department of Biotechnology, Indian Institute of Technology Kharagpur, West Bengal 721302, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);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

    Arsenic; groundwater; indigenous bacteria; arsenate reduction; arsenite oxidation;

    机译:砷;地下水;本地细菌;减少砷酸盐;亚砷酸盐氧化;

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