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Transposon-Like Organization of the Plasmid-Borne Organophosphate Degradation (opd) Gene Cluster Found in Flavobacterium sp.

机译:发现在黄杆菌属中的质粒-细菌有机磷降解(opd)基因簇的转座子样组织。

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摘要

Several bacterial strains that can use organophosphate pesticides as a source of carbon have been isolated from soil samples collected from diverse geographical regions. All these organisms synthesize an enzyme called parathion hydrolase, and in each case the enzyme is encoded by a gene (opd) located on a large indigenous plasmid. These plasmids show considerable genetic diversity, but the region containing the opd gene is highly conserved. Two opd plasmids, pPDL2 from Flavobacterium sp. and pCMS1 from Pseudomonas diminuta, are well characterized, and in each of them a region of about 5.1 kb containing the opd gene shows an identical restriction pattern. We now report the complete sequence of the conserved region of plasmid pPDL2. The opd gene is flanked upstream by an insertion sequence, ISFlsp1, that is a member of the IS21 family, and downstream by a Tn3-like element encoding a transposase and a resolvase. Adjacent to opd but transcribed in the opposite direction is an open reading frame (orf243) with the potential to encode an aromatic hydrolase somewhat similar to Pseudomonas putida TodF. We have shown that orf243 encodes a polypeptide of 27 kDa, which plays a role in the degradation of p-nitrophenol and is likely to act in concert with opd in the degradation of parathion. The linkage of opd and orf243, the organization of the genes flanking opd, and the wide geographical distribution of these genes suggest that this DNA sequence may constitute a complex catabolic transposon.
机译:从不同地理区域收集的土壤样品中分离出了几种可以使用有机磷酸酯农药作为碳源的细菌菌株。所有这些生物都合成一种称为对硫磷水解酶的酶,在每种情况下,该酶均由位于大型原生质粒上的基因(opd)编码。这些质粒显示出相当大的遗传多样性,但是包含opd基因的区域是高度保守的。两个opd质粒,来自Flavobacterium sp。的pPDL2。来自假单胞菌(Pseudomonas diminuta)的pCMS1和pCMS1已被很好地表征,并且在它们各自的包含opd基因的约5.1kb的区域中显示出相同的限制模式。现在我们报告质粒pPDL2的保守区的完整序列。 opd基因的上游侧是插入序列ISFlsp1,该序列是IS21家族的成员,下游是Tn3样元件,其编码转座酶和分辨酶。与opd相邻但在相反方向转录的是一个开放阅读框(orf243),其潜力可能编码某种类似于恶臭假单胞菌TodF的芳香族水解酶。我们已经显示,orf243编码27 kDa的多肽,该多肽在对硝基苯酚的降解中起作用,并且可能与对硫磷降解中的opd协同作用。 opd和orf243的联系,opd侧翼基因的组织以及这些基因的广泛地理分布表明,该DNA序列可能构成复杂的分解代谢转座子。

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