4.7 Article

Polyaromatic hydrocarbon (PAH) degradation potential of a new acid tolerant, diazotrophic P-solubilizing and heavy metal resistant bacterium Cupriavidus sp MTS-7 isolated from long-term mixed contaminated soil

期刊

CHEMOSPHERE
卷 162, 期 -, 页码 31-39

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2016.07.052

关键词

PAH degradation; Acid-tolerant bacteria; N-fixation; P-solubilization; Heavy metal resistance

资金

  1. Australian government
  2. Cooperative Research Centre for Contamination Assessment and Remediation of the Environment (CRC CARE) for the International Postgraduate Research Scholarship
  3. Korean government through National Research Foundation of Korea Grant [NRF-2015R1A6A1A03031413]
  4. CRC CARE top-up fellowship

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An isolate of Cupriavidus (strain MTS-7) was identified from a long-term PAHs and heavy metals mixed contaminated soil with the potential to biodegrade both LMW and HMW PAHs with added unique traits of acid and alkali tolerance, heavy metal tolerance, self-nutrient assimilation by N fixation and P solubilization. This strain completely degraded the model 3 (150 mg L-1 Phe), 4 (150 mg L-1 Pyr) and 5 (50 mg L-1 BaP) ring PAHs in 4, 20 and 30 days, respectively. It could mineralize 90-100% of PAHs (200 mg L-1 of Phe and Pyr) within 15 days across pH ranging from 5 to 8 and even in the presence of toxic metal contaminations. During biodegradation, the minimum inhibitory concentrations were 5 (Cu2+) and 3 (Cd2+, Pb2+, Zn2+) mg L-1 of the potentially bioavailable metal ions and over 17 mg L-1 metal levels was lethal for the microbe. Further, it could fix 217-274 mu g mL(-1) of N and solubilize 79-135 mu g mL(-1) of P while PAHs degradation. MTS-7 as a superior candidate could be thus used in the enhanced bioaugmentation and/or phytoremediation of long-term mixed contaminated sites. (C) 2016 Elsevier Ltd. All rights reserved.

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