首页> 外文期刊>Journal of bacteriology >Complete Sequence of a 184-Kilobase Catabolic Plasmid from Sphingomonas aromaticivorans F199
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Complete Sequence of a 184-Kilobase Catabolic Plasmid from Sphingomonas aromaticivorans F199

机译:鞘氨醇单胞菌F199的184碱基分解代谢质粒的完整序列。

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The complete 184,457-bp sequence of the aromatic catabolic plasmid, pNL1, from Sphingomonas aromaticivorans F199 has been determined. A total of 186 open reading frames (ORFs) are predicted to encode proteins, of which 79 are likely directly associated with catabolism or transport of aromatic compounds. Genes that encode enzymes associated with the degradation of biphenyl, naphthalene,m-xylene, and p-cresol are predicted to be distributed among 15 gene clusters. The unusual coclustering of genes associated with different pathways appears to have evolved in response to similarities in biochemical mechanisms required for the degradation of intermediates in different pathways. A putative efflux pump and several hypothetical membrane-associated proteins were identified and predicted to be involved in the transport of aromatic compounds and/or intermediates in catabolism across the cell wall. Several genes associated with integration and recombination, including two group II intron-associated maturases, were identified in the replication region, suggesting that pNL1 is able to undergo integration and excision events with the chromosome and/or other portions of the plasmid. Conjugative transfer of pNL1 to another Sphingomonas sp. was demonstrated, and genes associated with this function were found in two large clusters. Approximately one-third of the ORFs (59 of them) have no obvious homology to known genes.
机译:已经确定了来自鞘氨醇单胞菌 F199的芳香族分解代谢质粒pNL1的完整184,457-bp序列。预计总共有186个开放阅读框(ORF)编码蛋白质,其中79个可能与芳香化合物的分解代谢或运输直接相关。编码与联苯,萘, m -二甲苯和 p -甲酚降解相关的酶的基因预计将分布在15个基因簇中。与不同途径相关的基因的异常共聚似乎是响应于不同途径中的中间体降解所需的生化机制的相似性而进化的。推定的外排泵和几种假设的膜相关蛋白被鉴定并预测参与分解过程中芳香族化合物和/或中间体在细胞壁上的转运。在复制区域中鉴定了几个与整合和重组相关的基因,包括两个与II组内含子相关的成熟酶,这表明pNL1能够与染色体和/或质粒的其他部分发生整合和切除事件。 pNL1转移到另一个鞘氨醇单胞菌 sp。证明了这一点,并在两个大簇中发现了与此功能相关的基因。大约三分之一的ORF(其中59个)与已知基因没有明显的同源性。

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