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北极表层海水中氯代十六烷降解菌的多样性 被引量:8

Diversity of C_(16)H_(33) Cl-degrading bacteria in surface seawater of the Arctic Ocean
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摘要 【目的】为了研究北极地区表层海水中氯代十六烷(C16H33Cl)降解菌的多样性,并获得新的卤代烃降解菌资源。【方法】以C16H33Cl为唯一碳源和能源在4℃和25℃下对表层海水样品进行富集,通过平板分离鉴定可培养菌株,并验证其降解能力;同时利用变性梯度凝胶电泳(DGGE)分析降解菌群结构。【结果】从12个北极表层海水样品中富集分离得到112株可培养菌株。经过降解实验验证,发现19株菌株能够降解氯代十六烷,其中食烷菌(Alcanivorax)、红球菌(Rhodococcus)表现出很好的乳化和降解现象,海杆菌(Marinobacter)也有较好的降解效果。DGGE分析显示,富集驯化的降解菌群中主要优势菌为Alcanivorax,Parvibaculum和Thioclava属的菌株。【结论】北极海水中卤代烃降解菌主要是α-proteobacteria,γ-proteobacteria,Actinobacteria和Bacteroidetes。文章首次报道了北极海水卤代烷烃降解菌多样性,研究结果对于认识北极环境中的降解菌资源与生物多样性有参考价值。 [Objective]To detect the diversity of the degradation bacteria of halogenated-alkane form the surface seawater of the Arctic Ocean.[Method] Twelve surface-water samples from the Arctic Ocean were collected and enriched using C16H33Cl as the sole carbon and energy source.Bacteria from the enriched cultures were isolated on marine agar,and followed by 16S rRNA gene identification and phylogenetic analysis.Further,their degradation ability was tested with C16H33Cl.The bacterial community structures were further examined by denaturing gradient gel electrophoresis(DGGE).[Result] In total 112 isolates were obtained from the 12 samples,of which 19 isolates degraded C16H33Cl.Bacteria of Alcanivorax and Rhodococcus exerted good emulsification and degradation,whereas bacteria of Marinobacter also had the degradation capacity,but less.DGGE analysis revealed that Alcanivorax,Parvibaculum and Thioclavawere dominated in the enriched consortia.[Conclusion] The C16H33Cl degradation bacteria in the Arctic marine environment mainly belonged to α-proteobacteria,γ-proteobacteria,actinobacteria and bacteroidetes.This is the first report on the diversity of degradation bacteria of halogenated alkane in the Arctic Ocean.Our result contributed to the knowledge about the arctic environment and the biodiversity of degrading bacteria.
出处 《微生物学报》 CAS CSCD 北大核心 2012年第8期1011-1020,共10页 Acta Microbiologica Sinica
基金 国家海洋局青年海洋科学基金(2012142) 海洋公益性行业科研专项(201005032) IPY中国行动计划 海洋公益性行业科研专项经费项目(201105022-2)~~
关键词 北极 表层海水 氯代十六烷 生物降解 多样性 the Arctic,surface seawater,C16H33Cl,biodegradation; diversity
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参考文献23

  • 1McConnell G, Ferguson D, Pearson C. Chlorinated hydrocarbons and the environment. Endeavour, 1975, 34 (121) :13.
  • 2Bayen S, Obbard JP, Thomas GO. Chlorinated paraffins: A review of analysis and environmental occurrence. Environment International, 2006, 32 ( 7 ) : 915-929.
  • 3Janssen DB, Oppentocht JE, Poelarends GJ. Microbial dehalogenation. Current Opinion in Biotechnology, 2001, 12(3) :254-258.
  • 4Bosma T, Damborsky J, Stucki G, Janssen DB. Biodegradation of 1,2,3-trichloropropane through directed evolution and heterologous expression of a haloalkane dehalogenase gene. Applied and Environmental Microbiology, 2002, 68 (7) :3582-3587.
  • 5Keuning S, Janssen DB, Witholt B. Purification and characterization of hydrolytic haloalkane dehalogenase from Xanthobacter autotrophicus G J10. Journal of bacteriology, 1985, 163 ( 2 ) :635-639.
  • 6Yokota T, Omori T, Kodama T. Purification and properties of haloalkane dehalogenase from Corynebacterium sp. strain m15 -3. Journal of bacteriology, 1987, 169(9):4049-4054.
  • 7Kulakova AN, Larkin M J, Kulakov LA. The plasmid- located haloalkane dehalogenase gene from Rhodococcus rhodochrous NCIMB 13064. Microbiology, 1997, 143(Pt 1) :109-115.
  • 8NagataY, Miyauchi K, Damborsky J, Manova K, Ansorgova A. Purification and characterization of a haloalkane dehalogenase of a new substrate class from a gamma-hexachlorocyclohexane-degrading bacterium, Sphingomonas paucimobilis UT26. Applied and Environmental Microbiolozv , 1997, 63 (9) :3707-3710.
  • 9Jesenska A, Bartos M, Czernekova V, Rychlik I,Pavlik I,Damborsky J. Cloning and expression of the haloalkane dehalogenase gene dhmA from Mycobacterium avium N85 and preliminary characterization of DhmA. Applied and Environmental Microbiology, 2002, 68 ( 8 ) : 3724-3730.
  • 10Sato Y, Natsume R, Tsuda M, Damborsky J, Nagata Y, Senda T. Crystallization and preliminary crystallographic analysis of a haloalkane dehalogenase, DbjA, from Bradyrhizobium japonicum USDA110. Acta Crystallographica Section F : Structural Biology and Crystallization Communications, 2007, 63 ( Pt 4) : 294- 296.

二级参考文献34

  • 1谢华,薛燕芬,赵爱民,李铁钢,马延和,曾艳.太平洋帕里西维拉海盆细菌多样性的非培养的初步分析[J].微生物学报,2005,45(1):1-5. 被引量:12
  • 2牛明芬,李凤梅,韩晓日,郭书海,牛之欣,冷延慧,张春桂.生物表面活性剂产生菌的筛选及表面活性剂稳定性研究[J].生态学杂志,2005,24(6):631-634. 被引量:37
  • 3刘陈立,邵宗泽.海洋石油降解微生物的分离鉴定[J].海洋学报,2005,27(4):114-120. 被引量:33
  • 4Head IM, Jones DM, R? ling WFM. Marine microorganisms make a meal of oil. Nature Review Microbiology, 2006, 4 (3) : 173-182.
  • 5Swannell RP, Lee K, McDonagh M. Field evaluation of marine oil spill bioremediation. Microbiology and Molecular Biology Reviews, 1996, 60 (2) : 342-365.
  • 6Head IM. , Swannell RP. Bioremediation of potroleum hydrocarbon contaminants in marine habitats. Current opinion in Biotechnology, 1999, 10 (3) : 234-239.
  • 7Leahy JG, Colwell RR. Microbial degradation of hydrocarbons in the environment. Microbiology and Molecular Biology Reviews, 1990 54 (3) : 305-315.
  • 8Juhasz AL, Naidu R. Bioremediation of high molecular weight polycyclic aromatic hydrocarbons: a review of the microbial degradation of benzo [ a] pyrene. International Biodeterioration & Biodegradation, 2000, 45 ( 1 ) : 57- 88.
  • 9Brakstad OG, Lφdeng AG. Microbial diversity during biodegradation of crude oil in seawater from the North Sea. Microbial Ecology, 2005 ,49 (1): 94-103.
  • 10Brown MV, Philip GK, Bunge JA, Smith MC, Bissett A, Lauro FM, Fuhrman JA, Donachie SP. Microbial community structure in the North Pacific Ocean. The International Society for Microbial Ecology Journal, 2009, 3 (12) : 1374-1386.

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