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苯乙烯微生物降解机理的研究进展 被引量:4

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摘要 综述苯乙烯微生物降解的机理。对需氧和厌氧苯乙烯降解的乙烯基侧链氧化和芳香环开裂途径、高级苯乙烯降解途径基因组和调节中枢、影响苯乙烯降解的生理学因子、生物膜中苯乙烯降解微生物和途径酶的生物技术运用的相关文献进行分析研究。
出处 《生物技术》 CAS CSCD 2004年第6期79-82,共4页 Biotechnology
基金 "8 63"项目 :国家高技术研究发展计划 ("863计划")项目资助(2 0 0 2AA6490 50 )
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参考文献17

  • 1O'Leary ND, Duetz WA,Dobson ADW, et al. Induction and repression of the styoperon in Pseudomonas paida CA - 3 during growth on phenylacetic acid under organic and inorganic nutrient - limiting continuous culture conditions[J]. FEMS Microbiol. Lett,2002,20
  • 2Ferrandez A, Minambres B, Garcia B, et al.Catabolism of phenylacetic acid in Escherichia coli[J] .J Biol Chem, 1998,273:25974- 25986.
  • 3Santos PM, Blatny JM, Di Bartolo I, et al. Physiological analysis of the expression of the styrene degradation gene cluster in Pseudomonas fluorescens ST[J].Appl Environ Microbiol,2000,66:1305- 1310.
  • 4Juneson C, Ward OP,Singh A. Microbial treatment of a styrene - contaminated air stream in a biofilter with high elimination capacities[J] .J Ind Microbiol Biotechnol. ,2001,26:196-202.
  • 5Zilli M,Palazzi E,Sene L,et al.Toluene and styrene removal from air in biofilters[ J]. Process Biochem,2001,37:423 -429.
  • 6Wubbolts MG, Reuvekam P, Witholt B. TOL plasmid- specified xylene oxygenase is a wide substrate range monooxygenase capable of olefin epoxidation[J]. Enzyme Microbiol Techol, 1994,16:608 - 615.
  • 7Nothe C, Hartmans S. Formation and degradation of styrene oxide stereoisomers by different microorganisms[ J]. Biocatalysis, 1994,10:219 - 225.
  • 8O' Connor KE, Hartmaans S. Indigo formation by hydrocarbon - degrading bacteria[J]. Biotechnol Lett, 1998,20:219 - 223.
  • 9Schulze B, Wubbolts MG. Biocatalysts for industrial production of fine chemicals[ J]. Curr Opin Biotechnol, 1999,10:609 - 615.
  • 10Luengo JM, Garcia JL, Olivera ER. The phenylacetyl - CoA catabolon: a complex catabolic unit with broad biotechnological applications[ J]. Microbiology,2001,39:1434 - 1442.

同被引文献37

  • 1吴献花,孙珮石,邵丹,雷艳梅,章新,王林.生物滴滤塔处理苯乙烯气流的工效和生物膜微群落的分析[J].环境污染与防治,2006,28(4):241-244. 被引量:4
  • 2张放,邵华.苯乙烯职业暴露危害研究进展[J].中国公共卫生,2006,22(9):1145-1146. 被引量:33
  • 3Miller R R, Newhook R, Poole A. Styrene production, use and human exposure[J]. Crit Rev Toxicol, 1994, 24:1-10.
  • 4Sumner S J, Fennel T R. Review of the metabolic fate of styrene[J]. Crit Rev Toxicol, 1994,24: 511-533.
  • 5Zilli M, Converti A, Lodi A, et al. Phenol removal from waste gases with a biological filter by Pseudomonas putida [J]. Biotechnol Bioeng, 1993,41:693-699.
  • 6Hoben H J, Somasegaram P. Comparison of the pour, spread and drop plate method for enumeration of Rhizobium spp. in inoculants made from presterilized peat[J]. Appl Environ Microbiol, 1982,44:1246-1247.
  • 7Veiga M C, Kennes C. Parameters affecting performance and modeling of biofilters treating alkylbenzene-polluted air[J]. Appl Microbiol Biotechnol, 2001,55: 254-258.
  • 8Cox H H J, Moerman R E, van Baalen S, et al. Performance of a styrene-degrading biofilter containing the yeast Exophiala jeanselmei[J]. Biotechnol Bioeng, 1997,53: 259-266.
  • 9Marczynski B, Peel M, Baur X. New aspects in genotoxic risk assessment of styrene exposure-a working hypothesis [J]. Med. Hypotheses, 2000,54(4):619-623.
  • 10Rene E R, Spackova R, Veiga M C, et al. Biofiltration of mixtures of gas-phase styrene and acetone with the fungus Sporothris variecibatus [J]. J. Hazard. Mater., 2010,184(1-3): 204-214.

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