Associate Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates
Title : 环境学院教工党支部宣传委员
Title of Paper:Bacteria capable of degrading anthracene, phenanthrene, and fluoranthene as revealed by DNA based stable-isotope probing in a forest soil
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Date of Publication:2016-05-05
Journal:JOURNAL OF HAZARDOUS MATERIALS
Included Journals:SCIE、EI、PubMed
Volume:308
Page Number:50-57
ISSN No.:0304-3894
Key Words:Anthracene; Phenanthrene; Fluoranthene; DNA stable-isotope probing; Biodegradation; Forest soil
Abstract:Information on microorganisms possessing the ability to metabolize different polycyclic aromatic hydrocarbons (PAHs) in complex environments helps in understanding PAHs behavior in natural environment and developing bioremediation strategies. In the present study, stable-isotope probing (SIP) was applied to investigate degraders of PAHs in a forest soil with the addition of individually C-13-labeled phenanthrene, anthracene, and fluoranthene. Three distinct phylotypes were identified as the active phenanthrene-, anthracene- and fluoranthene-degrading bacteria. The putative phenanthrene degraders were classified as belonging to the genus Sphingomona. For anthracene, bacteria of the genus Rhodanobacter were the putative degraders, and in the microcosm amended with fluoranthene, the putative degraders were identified as belonging to the phylum Acidobacteria. Our results from DNA-SIP are the first to directly link Rhodanobacter- and Acidobacteria-related bacteria with anthracene and fluoranthene degradation, respectively. The results also illustrate the specificity and diversity of three- and four-ring PAHs degraders in forest soil, contributes to our understanding on natural PAHs biodegradation processes, and also proves the feasibility and practicality of DNA-based SIP for linking functions with identity especially uncultured microorganisms in complex microbial biota. (C) 2016 Elsevier B.V. All rights reserved.
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