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从土壤中分离出的杀螟硫磷降解菌的遗传和表型多样性。

Genetic and phenotypic diversity of fenitrothion-degrading bacteria isolated from soils.

作者信息

Kim Kyung-Duk, Ahn Jae-Hyung, Kim Taesung, Park Seong Chan, Seong Chi Nam, Song Hong-Gyu, Ka Jong-Ok

机构信息

Department of Agricultural Biotechnology, Seoul National University, Seoul 151-742, Korea.

出版信息

J Microbiol Biotechnol. 2009 Feb;19(2):113-20. doi: 10.4014/jmb.0808.467.

Abstract

Twenty-seven fenitrothion-degrading bacteria were isolated from different soils, and their genetic and phenotypic characteristics were investigated. Analysis of the 16S rDNA sequence showed that the isolates were related to members of the genera Burkholderia, Pseudomonas, Sphingomonas, Cupriavidus, Corynebacterium, and Arthrobacter. Among the 27 isolates, 12 different chromosomal DNA fingerprinting patterns were obtained by polymerase chain reaction (PCR) amplification of repetitive extragenic palindromic (REP) sequences. The isolates were able to utilize fenitrothion as a sole source of carbon and energy, producing 3-methyl-4- nitrophenol as the intermediate metabolite during the complete degradation of fenitrothion. Twenty-two of 27 isolates were able to degrade parathion, methyl-parathion, and p-nitrophenol, but only strain BS2 could degrade EPN (O-ethyl-O-p-nitrophenyl phenylphosphorothioate) as a sole source of carbon and energy for growth. Eighteen of the 27 isolates had plasmids. When analyzed with PCR amplification and dot-blotting hybridization using various specific primers targeted to the organophosphorus pesticide hydrolase genes of the previously reported isolates, none of the isolates showed positive signals, suggesting that the corresponding genes of our isolates had no significant sequence homology with those of the previously isolated organophosphate pesticide-degrading bacteria.

摘要

从不同土壤中分离出27株杀螟硫磷降解菌,并对其遗传和表型特征进行了研究。16S rDNA序列分析表明,这些分离株与伯克霍尔德氏菌属、假单胞菌属、鞘氨醇单胞菌属、贪铜菌属、棒状杆菌属和节杆菌属的成员有关。在这27株分离株中,通过对重复外显子回文(REP)序列进行聚合酶链反应(PCR)扩增,获得了12种不同的染色体DNA指纹图谱。这些分离株能够利用杀螟硫磷作为唯一的碳源和能源,在杀螟硫磷的完全降解过程中产生3-甲基-4-硝基苯酚作为中间代谢产物。27株分离株中有22株能够降解对硫磷、甲基对硫磷和对硝基苯酚,但只有菌株BS2能够降解EPN(O-乙基-O-对硝基苯基硫代磷酸酯)作为唯一的碳源和生长能源。27株分离株中有18株含有质粒。当使用针对先前报道的分离株的有机磷农药水解酶基因的各种特异性引物进行PCR扩增和斑点杂交分析时,所有分离株均未显示阳性信号,这表明我们分离株的相应基因与先前分离的有机磷农药降解菌的基因没有明显的序列同源性。

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