CLONING, CHARACTERIZATION, AND EXPRESSION OF A GENE REGION FROM PSEUDOMONAS SP STRAIN ADP INVOLVED IN THE DECHLORINATION OF ATRAZINE

被引:106
作者
DESOUZA, ML
WACKETT, LP
BOUNDYMILLS, KL
MANDELBAUM, RT
SADOWSKY, MJ
机构
[1] UNIV MINNESOTA, DEPT SOIL WATER & CLIMATE, ST PAUL, MN 55108 USA
[2] UNIV MINNESOTA, DEPT BIOCHEM, ST PAUL, MN 55108 USA
[3] UNIV MINNESOTA, INST BIOL PROC TECHNOL, ST PAUL, MN 55108 USA
[4] UNIV MINNESOTA, DEPT MICROBIOL, ST PAUL, MN 55108 USA
[5] VOLCANI RES CTR, INST SOIL & WATER, IL-50250 BET DAGAN, ISRAEL
关键词
D O I
10.1128/AEM.61.9.3373-3378.1995
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
We previously identified a Pseudomonas sp. strain, ADP, which rapidly metabolized atrazine in liquid culture, agar plates, and soils (R, T. Mandelbaum, D. L. Allan, and L. P. Wackett, Appl. Environ. Microbiol, 61:1451-1457, 1995). In this study, we report the cloning and partial characterization of a gene region from Pseudomonas sp. strain ADP that encodes atrazine degradation activity. A 22-kb EcoRI genomic DNA fragment, designated pMD1, was shown to encode atrazine dechlorination activity in Escherichia coli DH5 alpha. Atrazine degradation was demonstrated by a zone clearing assay on agar medium containing crystalline atrazine and by chromatographic methods. A gene conferring the atrazine-clearing phenotype was subsequently subcloned as a 1.9-kb AvaI fragment in pACYC184, designated pMD4, and was expressed in E. coli. This result and random Tn5 mutagenesis established that the 1.9-kb AvaI fragment was essential for atrazine dechlorination. High-pressure liquid and thin-layer chromatographic analyses were used to rigorously establish that E. coli containing pMD4 degraded atrazine and accumulated hydroxyatrazine. Hydroxyatrazine was detected only transiently in E. coli containing pMD1. This is consistent with the idea that hydroxyatrazine is the first metabolite in atrazine degradation by Pseudomonas sp. strain ADP. A 0.6-kb ApaI-PstI fragment from pMD4, containing the putative atrazine chlorohydrolase gene, hybridized to DNA from atrazine-degrading bacteria isolated in Switzerland and Louisiana. These data suggest that genes encoding atrazine hydrolysis to hydroxyatrazine are widespread in nature and contribute to the formation of hydroxyatrazine in soil, a reaction previously attributed solely to abiotic processes.
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页码:3373 / 3378
页数:6
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