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Unique features revealed by the genome sequence of Acinetobacter sp ADP1, a versatile and naturally transformation competent bacterium

机译:不动杆菌属ADP1基因组序列揭示的独特特征

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Acinetobacter sp. strain ADP1 is a nutritionally versatile soil bacterium closely related to representatives of the well-characterized Pseudomonas aeruginosa and Pseudomonas putida. Unlike these bacteria, the Acinetobacter ADP1 is highly competent for natural transformation which affords extraordinary convenience for genetic manipulation. The circular chromosome of the Acinetobacter ADP1, presented here, encodes 3325 predicted coding sequences, of which 60% have been classified based on sequence similarity to other documented proteins. The close evolutionary proximity of Acinetobacter and Pseudomonas species, as judged by the sequences of their 16S RNA genes and by the highest level of bidirectional best hits, contrasts with the extensive divergence in the GC content of their DNA (40 versus 62%). The chromosomes also differ significantly in size, with the Acinetobacter ADP1 chromosome <60% of the length of the Pseudomonas counterparts. Genome analysis of the Acinetobacter ADP1 revealed genes for metabolic pathways involved in utilization of a large variety of compounds. Almost all of these genes, with orthologs that are scattered in other species, are located in five major 'islands of catabolic diversity', now an apparent 'archipelago of catabolic diversity', within one-quarter of the overall genome. Acinetobacter ADP1 displays many features of other aerobic soil bacteria with metabolism oriented toward the degradation of organic compounds found in their natural habitat. A distinguishing feature of this genome is the absence of a gene corresponding to pyruvate kinase, the enzyme that generally catalyzes the terminal step in conversion of carbohydrates to pyruvate for respiration by the citric acid cycle. This finding supports the view that the cycle itself is centrally geared to the catabolic capabilities of this exceptionally versatile organism.
机译:不动杆菌属ADP1菌株是一种营养丰富的土壤细菌,与特性良好的铜绿假单胞菌和恶臭假单胞菌的代表密切相关。与这些细菌不同,不动杆菌ADP1具有很强的自然转化能力,为基因操作提供了极大的便利。在此显示的不动杆菌ADP1的环状染色体编码了3325个预测的编码序列,其中60%已根据与其他已证明蛋白的序列相似性进行了分类。不动杆菌属和假单胞菌属物种之间的进化接近性(根据其16S RNA基因的序列和双向最佳匹配的最高水平来判断)与它们DNA的GC含量差异很大(40%对62%)形成鲜明对比。染色体的大小也显着不同,不动杆菌ADP1染色体的长度小于假单胞菌对应长度的60%。不动杆菌ADP1的基因组分析揭示了涉及多种化合物利用的代谢途径的基因。几乎所有这些基因,以及直系同源物都散布在其他物种中,位于整个基因组的四分之一以内的五个主要的“分解代谢多样性岛”,现在是一个明显的“分解代谢多样性archipelago”。不动杆菌ADP1具有其他需氧土壤细菌的许多功能,其代谢方向是降解自然栖息地中的有机化合物。该基因组的一个显着特征是不存在对应于丙酮酸激酶的基因,丙酮酸激酶通常催化碳水化合物转化为丙酮酸以通过柠檬酸循环进行呼吸的最终步骤。这一发现支持这样一种观点,即循环本身与这种异常多用途生物的分解代谢能力密切相关。

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