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Unique features revealed by the genome sequence of Acinetobacter sp. ADP1, a versatile and naturally transformation competent bacterium.不动杆菌ADP1的基因组序列揭示的独特特征,ADP1是一种具有多种功能且天然具备转化能力的细菌。
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2
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Opportunities for genetic investigation afforded by Acinetobacter baylyi, a nutritionally versatile bacterial species that is highly competent for natural transformation.拜氏不动杆菌提供了基因研究的机会,它是一种营养需求多样的细菌,具有很高的自然转化能力。
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Rapid and assured genetic engineering methods applied to Acinetobacter baylyi ADP1 genome streamlining.快速且可靠的基因工程方法应用于鲍曼不动杆菌 ADP1 基因组简化。
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Genome plasticity in Acinetobacter: new degradative capabilities acquired by the spontaneous amplification of large chromosomal segments.不动杆菌的基因组可塑性:通过大染色体片段的自发扩增获得新的降解能力。
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Evolution recovers the fitness of Acinetobacter baylyi strains with large deletions through mutations in deletion-specific targets and global post-transcriptional regulators.进化通过在特定于缺失的靶点和全局转录后调控因子中的突变,使具有较大缺失的鲍曼不动杆菌菌株恢复适应性。
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Protein overabundance is driven by growth robustness.蛋白质过量是由生长健壮性驱动的。
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AlmA involved in the long-chain -alkane degradation pathway in ADP1 is a Baeyer-Villiger monooxygenase.ADP1 中的 AlmA 参与长链烷烃降解途径,是一种 Baeyer-Villiger 单加氧酶。
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Antibiotic Resistance and Genetic Variability of spp. from Wastewater Treatment Plant in Kokšov-Bakša (Košice, Slovakia).来自科克绍夫-巴克沙(斯洛伐克科希策)污水处理厂的[具体物种]的抗生素抗性与遗传变异性
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Horizontal Gene Transfer, Fitness Costs and Mobility Shape the Spread of Antibiotic Resistance Genes into Experimental Populations of Acinetobacter Baylyi.水平基因转移、适应代价和迁移率塑造了抗生素耐药基因在鲍曼不动杆菌实验种群中的传播。
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Tackling Multiple-Drug-Resistant Bacteria With Conventional and Complex Phytochemicals.用常规和复杂植物化学物质对抗多药耐药菌。
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Exopolysaccharide Distribution of and Bioemulsifier Production by Acinetobacter calcoaceticus BD4 and BD413.不动杆菌 BD4 和 BD413 的胞外多糖分布和生物乳化剂生产。
Appl Environ Microbiol. 1982 Dec;44(6):1335-41. doi: 10.1128/aem.44.6.1335-1341.1982.
2
Acinetobacter sp. ADP1: an ideal model organism for genetic analysis and genome engineering.不动杆菌属ADP1菌株:用于遗传分析和基因组工程的理想模式生物。
Nucleic Acids Res. 2004 Oct 28;32(19):5780-90. doi: 10.1093/nar/gkh881. Print 2004.
3
GenProtEC: an updated and improved analysis of functions of Escherichia coli K-12 proteins.GenProtEC:大肠杆菌K-12蛋白质功能的更新与改进分析
Nucleic Acids Res. 2004 Jan 1;32(Database issue):D300-2. doi: 10.1093/nar/gkh087.
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UniProt: the Universal Protein knowledgebase.通用蛋白质知识库(UniProt)。
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Enzyme-specific profiles for genome annotation: PRIAM.用于基因组注释的酶特异性图谱:PRIAM
Nucleic Acids Res. 2003 Nov 15;31(22):6633-9. doi: 10.1093/nar/gkg847.
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Type IV pili-related natural transformation systems: DNA transport in mesophilic and thermophilic bacteria.IV型菌毛相关的自然转化系统:嗜温菌和嗜热菌中的DNA转运
Arch Microbiol. 2003 Dec;180(6):385-93. doi: 10.1007/s00203-003-0616-6. Epub 2003 Oct 31.
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Feedback inhibition and repression of aspartokinase activity in Escherichia coli.大肠杆菌中天冬氨酸激酶活性的反馈抑制与阻遏
Ann N Y Acad Sci. 1961 Nov 2;94:952-9. doi: 10.1111/j.1749-6632.1961.tb35587.x.
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Pathways for biosynthesis of a bacterial capsular polysaccharide. III. Syntheses from radioactive substrates.细菌荚膜多糖的生物合成途径。III. 由放射性底物合成
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9
Pathways for biosynthesis of a bacterial capsular polysaccharide. I. Characterization of the organism and polysaccharide.细菌荚膜多糖的生物合成途径。I. 生物体和多糖的特性
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10
Pathways for biosynthesis of a bacterial capsular polysaccharide. I. Carbohydrate metabolism and terminal oxidation mechanisms of a capsuleproducing coccus.细菌荚膜多糖的生物合成途径。I. 产荚膜球菌的碳水化合物代谢及末端氧化机制
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不动杆菌ADP1的基因组序列揭示的独特特征,ADP1是一种具有多种功能且天然具备转化能力的细菌。

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

作者信息

Barbe Valérie, Vallenet David, Fonknechten Nuria, Kreimeyer Annett, Oztas Sophie, Labarre Laurent, Cruveiller Stéphane, Robert Catherine, Duprat Simone, Wincker Patrick, Ornston L Nicholas, Weissenbach Jean, Marlière Philippe, Cohen Georges N, Médigue Claudine

机构信息

Genoscope and CNRS-UMR8030, 2 rue Gaston Crémieux, 91057 Evry, Cedex, France.

出版信息

Nucleic Acids Res. 2004 Oct 28;32(19):5766-79. doi: 10.1093/nar/gkh910. Print 2004.

DOI:10.1093/nar/gkh910
PMID:15514110
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC528795/
Abstract

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.

摘要

不动杆菌属ADP1菌株是一种营养需求多样化的土壤细菌,与已得到充分研究的铜绿假单胞菌和恶臭假单胞菌的代表菌株密切相关。与这些细菌不同的是,不动杆菌ADP1具有很高的自然转化能力,这为基因操作提供了极大的便利。本文展示的不动杆菌ADP1的环状染色体编码了3325个预测的编码序列,其中60%已根据与其他已记录蛋白质的序列相似性进行了分类。根据16S RNA基因序列和最高水平的双向最佳匹配判断,不动杆菌和假单胞菌属物种在进化上亲缘关系较近,但其DNA的GC含量却有很大差异(分别为40%和62%)。染色体大小也存在显著差异,不动杆菌ADP1染色体长度不到假单胞菌对应染色体的60%。对不动杆菌ADP1的基因组分析揭示了参与多种化合物利用的代谢途径相关基因。几乎所有这些基因及其在其他物种中分散的直系同源基因,都位于整个基因组四分之一范围内的五个主要“分解代谢多样性岛”中,现在显然是一个“分解代谢多样性群岛”。不动杆菌ADP1具有其他需氧土壤细菌的许多特征,其代谢方向是降解自然栖息地中发现的有机化合物。该基因组的一个显著特征是缺少与丙酮酸激酶相对应的基因,丙酮酸激酶通常催化碳水化合物转化为丙酮酸的最后一步反应,以便通过柠檬酸循环进行呼吸作用。这一发现支持了这样一种观点,即柠檬酸循环本身主要是为这种具有非凡代谢多样性的生物体的分解代谢能力而设计的。