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Comparative Genomic Analysis of Acinetobacter oleivorans DR1 To Determine Strain-Specific Genomic Regions and Gentisate Biodegradation ▿ †

机译:不动不动杆菌DR1的比较基因组分析,以确定特定菌株的基因组区域和Gentis的生物降解 ▿ †

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摘要

The comparative genomics of Acinetobacter oleivorans DR1 assayed with A. baylyi ADP1, A. calcoaceticus PHEA-2, and A. baumannii ATCC 17978 revealed that the incorporation of phage-related genomic regions and the absence of transposable elements have contributed to the large size (4.15 Mb) of the DR1 genome. A horizontally transferred genomic region and a higher proportion of transcriptional regulator- and signal peptide-coding genes were identified as characteristics of the DR1 genome. Incomplete glucose metabolism, metabolic pathways of aromatic compounds, biofilm formation, antibiotics and metal resistance, and natural competence genes were conserved in four compared genomes. Interestingly, only strain DR1 possesses gentisate 1,2-dioxygenase (nagI) and grows on gentisate, whereas other species cannot. Expression of the nagI gene was upregulated during gentisate utilization, and four downstream open reading frames (ORFs) were cotranscribed, supporting the notion that gentisate metabolism is a unique characteristic of strain DR1. The genomic analysis of strain DR1 provides additional insights into the function, ecology, and evolution of Acinetobacter species.
机译:用Baylyi ADP1,A。calcoaceticus PHEA-2和A. baumannii ATCC 17978分析的油不动杆菌DR1的比较基因组学表明,噬菌体相关基因组区域的整合以及缺乏转座因子导致了较大的体积( DR1基因组的4.15 Mb)。水平转移的基因组区域和更高比例的转录调节子和信号肽编码基因被确定为DR1基因组的特征。在四个比较的基因组中保守了不完全的葡萄糖代谢,芳香族化合物的代谢途径,生物膜形成,抗生素和金属抗性以及自然能力基因。有趣的是,仅菌株DR1拥有龙胆酸酯1,2-双加氧酶(nagI)并在龙胆酸酯上生长,而其他物种则没有。 nagI基因的表达在龙胆草酸酯利用期间被上调,并且四个下游开放阅读框(ORF)被共转录,支持了龙胆酸酯代谢是菌株DR1的独特特征的观点。 DR1菌株的基因组分析为不动杆菌属物种的功能,生态学和进化提供了更多见解。

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