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克雷伯氏菌对三苯基锡的酶促降解特性
Characteristics of Biodegradation of Triphenyltin by Enzyme Obtained from Klebsiella pneumoniae

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叶锦韶 1   史一枝 1   尹华 1 *   麦碧娴 2   彭辉 1   秦华明 1   龙焰 1   赖新强 3  
文摘 研究了肺炎克雷伯氏菌对三苯基锡(TPhT)的酶促降解性能,并对酶促反应影响因素的作用机制进行了探讨,以期为阐明有机锡的微生物降解机制提供实验依据.研究证明,菌体、分泌物和胞内降解酶均具有降解TPhT的能力,在30℃转速为 130 r.min~(-1)的摇床中避光处理2 h后,对3 mg.L~(-1)TPhT的降解率分别为10.9%、5.3%和47.9%.影响因素实验表明,降解介质、pH、温度、TPhT浓度和金属离子均会对TPhT的酶促降解效果产生影响,其中TPhT酶促反应的最适pH和温度分别为 8和50℃. Mg~(2+)、Mn~(2+)、Fe~(2+)和Fe~(3+)在合适的浓度范围内,均会促进TPhT的降解.当Mg~(2+)的浓度为15 mg.L~(-1)时,胞内酶对 TPhT的降解率高达73.8%.金属离子的促进效果主要与其对酶的激活、作为电子受体或电子供体参与TPhT酶促降解等作用有关. TPhT的降解速率与其浓度呈现理想的线性关系.该反应的Vmax和Km分别为0.15 mg.(L.min)~(-1)和47.1 mg.L~(-1)
其他语种文摘 The objective of this study is to illuminate the mechanism of biodegradation of triphenyltin (TPhT). The removal of TPhT by Klebsiella pneumoniae was, therefore, investigated through characteristics studies. The influences of the various parameters were also discussed. The results demonstrated that the cell, extracellular secretion and intracellular enzyme were the effective biomasses for the biodegradation of TPhT. At initial concentration of 3 mg. L~(-1), 10. 9%, 5.3% and 47.9% of TPhT could be degraded by these biomasses respectively at 30℃ within 2 hours under an rotary shaker at 120 r. min~(-1). The experimental results also showed that the enzyme activity could be affected by the buffers, pH, temperature, metals and the concentration of TPhT. The degradation efficiency would reach the highest point at pH 8, and at the optimal temperature of 50℃. Metals including Mg~(2+), Mn~(2+), Fe~(2+) and Fe~(3+) improved the enzyme activity at certain concentrations. In the presence of 15 mg. L~(-1) of Mg~(2+), the removal percentage of TPhT was up to 73. 8%. It suggested that the metals activated the enzyme and interacted with the TPhT enabling its removal during the biodegradation process. Linear plots of removal ratios versus concentrations of TPhT meant that the biodegradation fitted the Michaelis-Menten model. The V_(max) and K_m of this biodegradation were 0. 15 mg. (L. min)~(-1) and 47. 1 mg. L~(-1), respectively
来源 环境科学 ,2010,31(2):459-464 【核心库】
关键词 肺炎克雷伯氏菌 ; 三苯基锡 ; 有机锡 ; 降解酶 ; 生物降解
地址

1. 暨南大学环境工程系, 广州, 510632  

2. 中国科学院广州地球化学研究所, 有机地球化学国家重点实验室, 广州, 510640  

3. 暨南大学实验技术中心, 广州, 510632

语种 中文
文献类型 研究性论文
ISSN 0250-3301
学科 环境科学基础理论
基金 国家自然科学基金项目
文献收藏号 CSCD:3933881

参考文献 共 30 共2页

1.  Ilgen G. Organometals of tin, lead and mercury compounds in landfill gases and leachates from Bavaria, Germany. Waste Management,2008,28(9):1518-1527 被引 1    
2.  Marcic C. TBT and TPhT persistence in a sludged soil. Chemosphere,2006,65(11):2323-2332 被引 2    
3.  Diez S. Occurrence and degradation of butyltins and wastewater marker compounds in sediments from Barcelona harbor, Spain. Environment International,2006,32(7):858-865 被引 1    
4.  Micael J. Genotoxic effects of binary mixtures of xenoandrogens (tributyltin, triphenyltin) and a xenoestrogen (ethinylestradiol) in a partial life-cycle test with Zebrafish ( Danio rerio). Environment International,2007,33(8):1035-1039 被引 4    
5.  Satone H. Tributyltin-binding protein type 1 has a distinctive lipocalin-like structure and is involved in the excretion of tributyltin in Japanese flounder, Paralichthys olivaceus. Aquatic Toxicology,2008,90(4):292-299 被引 2    
6.  Yang R Q. Butyltins compounds in molluscs from Chinese Bohai coastal waters. Food Chemistry,2006,97(4):637-643 被引 8    
7.  Pavoni B. Imposex levels and concentrations of organotin compounds (TBT and its metabolites) in Nassarius nitidus from the Lagoon of Venice. Marine Pollution Bulletin,2007,55(10/12):505-511 被引 3    
8.  Chandrinou S. Distribution of organotin compounds in the bivalves of the Aegean Sea, Greece. Environment International,2007,33(2):226-232 被引 6    
9.  Veltman K. Organotin accumulation in an estuarine food chain: Comparing field measurements with model estimations. Marine Environmental Research,2006,61(5):511-530 被引 4    
10.  Murai R. Biomagnification profiles of tributyltin (TBT) and triphenyltin (TPT) in Japanese coastal food webs elucidated by stable nitrogen isotope ratios. Chemosphere,2008,73(11):1749-1756 被引 3    
11.  Cruz A. Aeromonas veronii, a tributyltin (TBT)-degrading bacterium isolated from an estuarine environment, Ria de Aveiro in Portugal. Marine Environmental Research,2007,64(5):639-650 被引 7    
12.  叶锦韶. 三苯基锡吸附降解菌的分离及特性研究. 环境科学,2009,30(8):2452-2457 被引 4    
13.  Mimura H. Adsorption of tributyltin by tributyltin resistant marine Pseudoalteromonas sp. cells. Marine Pollution Bulletin,2008,57(6/12):877-882 被引 2    
14.  Martins J D. Comparative study of tributyltin toxicity on two bacteria of the genus Bacillus. Toxicology in Vitro,2005,19(7):943-949 被引 3    
15.  Tsang C K. Biodegradation capacity of tributyltin by two Chlorella species. Environmental Pollution,1999,105(3):289-297 被引 7    
16.  Ganea C. Bacterial transporters: Charge translocation and mechanism. Biochimica et Biophysica Acta ( BBA ) -Bioenergetics,2009,1787(6):706-713 被引 1    
17.  Feitosa E. Phase diagrams of a CTAB/organic solvent/buffer system applied to extraction of enzymes by reverse micelles. Journal of Chromatography B,2008,862(1/2):58-63 被引 3    
18.  Serebryakova L T. Improvement of hydrogenase enzyme activity by water-miscible organic solvents. Enzyme and Microbial Technology,2009,44(5):329-333 被引 7    
19.  Pinsach J. Influence of process temperature on recombinant enzyme activity in Escherichia coli fed-batch cultures. Enzyme and Microbial Technology,2008,43(7):507-512 被引 5    
20.  Blum P. Quantification of biodegradation for o-xylene and naphthalene using first order decay models, Michaelis-Menten kinetics and stable carbon isotopes. Journal of Contaminant Hydrology,2009,105(3/4):118-130 被引 2    
引证文献 7

1 陈烁娜 球形红假单胞菌对三苯基锡的降解性能研究 环境科学,2011,32(2):536-541
被引 1

2 佟瑶 金属离子对三苯基锡酶促降解的影响 环境科学,2011,32(3):779-783
被引 3

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