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苯酚降解菌红球菌PNAN5菌株(Rhodococcussp.strain PNAN5)的分离鉴定、降解特性及其开环双加氧酶性质研究 被引量:63

Isolation, identification of phenol-degrading Rhodococcus sp. strain PNAN5 and characterization of its ring-cleavage dioxygenases
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摘要 分离到一株能以苯酚、苯甲酸、对甲酚、萘为唯一碳源和能源生长、具有同时降解单环和双环芳烃能力的细菌菌株,经生理生化、16SrRNA基因序列分析等鉴定为红球菌PNAN5菌株(Rhodococcussp.strainPNAN5).在实验条件下和在温度为20~40℃、pH7 0~9 0范围内菌株PNAN5降解苯酚的效率保持在80%~100%之间,苯酚浓度在2~10mmol·L-1范围内变化对降解效率没有明显的影响.该菌株通过邻苯二酚1,2 双加氧酶催化的开环途径降解芳烃,不同于已知的浑浊红球菌(R.opacus)是通过邻苯二酚2,3 双加氧酶催化芳烃降解.以细胞裂解液测定该酶的酶促反应动力学常数Km值为35 94μmol·L-1,Vmax为0 84μmol·L-1·min-1·mg-1. A bacterial strain using phenol, naphthalene, benzoate and p-cresol as sole carbon and energy sources was isolated from waste sludge and was identified as Rhodococcus sp. strain PNAN5 according to morphological, physiological and its 16S rRNA gene sequence. This strain is able to degrade both polycyclic aromatics such as naphthalene and monocyclic aromatics such as phenol. Under experimental conditions, strain PNAN5 degraded 80~100% of the added phenols at temperatures of 20~40℃ and pH of 7.0~9.0. The concentrations of phenol at 2~10?mmol·L^(-1) did not significantly affect its removal efficiency. Its aromatic-degradation pathway is different from catechol 2,3-dioxygenase of the R. opacus, but adopted to that of catechol 1,2-dioxygenase. The kinetic constants of the catechol 1,2-dioxygenase in cellular lysates were determined. The K_m and V_(max) of catechol 1,2-dioxygenase for catechol were 35.94?μmol·L^(-1) and 0.84?mol·L^(-1)·min^(-1)·mg^(-1)(protein), respectively.
出处 《环境科学学报》 CAS CSCD 北大核心 2004年第3期482-486,共5页 Acta Scientiae Circumstantiae
基金 国家863项目(2002AA601170) 中科院知识创新工程项目(KSCXZ SW 113)
关键词 苯酚 PNAN5 菌株 红球菌属 邻苯二酚1 2-双加氧酶 细胞裂解液 污泥 污水处理工艺 Rhodococcus phenol naphthalene catechol 1,2-dioxygenase
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  • 1Gennaro P D, Rescalli E, Galli E. Characterization of Rhodococcus opacus R7, a strain able to degrade naphthalene and o-xylene isolated from a polycyclic aromatic hydrocarbon contaminated soil [J]. Res Microbiol, 2001, 152(9): 641-651
  • 2Konopka A. Isolation and characterization of a subsurface bacterium that degrades aniline and methylanilines [ J]. FEMS Microbiol Lett, 1993, 111(1):93-100
  • 3Krieg R, Holt J G. Bergey' s manual of determinative bacteriology ( 9th edition) [ M ]. Baltimore, Phladelphia: Williams Wilkins, 1994
  • 4Treadway S L, Yanagimachi K S, Lankenau E. Isolation and characterization of indene bioconversion genes from Rhodococcus strain I24 [J]. Appl Microbiol Biotechnol, 1999, 51(6):786-793
  • 5Folsom B R, Chapman P J, Pritchard P H. Phenol and trichloroethylene degradation by Pseudomonas cepacia G4: Kinetics and interactions between substrates [J]. Appl Environ Microbiol, 1990, 56(5):1279-1285
  • 6Liu Z, Yang H, Huang Z. Degradation of aniline by newly isolated, extremely aniline-tolerant Delftia sp. AN3 [J]. Appl Microbiol Biotechnol, 2002, 58(6): 679-682
  • 7Strachan P D, Freer A A, Fewson C A. Purification and characterization of catechol 1,2-dioxygenase from Rhodococcus rhodochrous NCIMB 13259 and cloning and sequencing of its catA gene [J]. Biochem J, 1998, 333(3): 741-747
  • 8Briganti F, Pessione E, Giunta C. Purification, biochemical properties and substrate specificity of a catechol 1,2-dioxygenase from a phenol degrading Acinetobacter radioresistens [J]. FEBS Lett, 1997, 416(1):61-64
  • 9Bradford M M. A rapid and sensitive method for the quantification of microgram quantities of protein utilizing the principle of proteindye binding [J]. Anal Biochem, 1976, 72(1): 248-254
  • 10YoonJ H, Kang SS, ChoYG. Rhodococcuspyridinivorans sp. nov., a pyridine-degradingbacterium[J]. Int J Syst Evol Microbiol, 2000,50(6) :2173-2180

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