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厌氧芳香族降解反硝化细菌菌株EbN1的基因组序列。

The genome sequence of an anaerobic aromatic-degrading denitrifying bacterium, strain EbN1.

作者信息

Rabus Ralf, Kube Michael, Heider Johann, Beck Alfred, Heitmann Katja, Widdel Friedrich, Reinhardt Richard

机构信息

Max Planck Institut für Marine Mikrobiologie, Celsiusstrasse 1, 28359, Bremen, Germany.

出版信息

Arch Microbiol. 2005 Jan;183(1):27-36. doi: 10.1007/s00203-004-0742-9. Epub 2004 Nov 13.

Abstract

Recent research on microbial degradation of aromatic and other refractory compounds in anoxic waters and soils has revealed that nitrate-reducing bacteria belonging to the Betaproteobacteria contribute substantially to this process. Here we present the first complete genome of a metabolically versatile representative, strain EbN1, which metabolizes various aromatic compounds, including hydrocarbons. A circular chromosome (4.3 Mb) and two plasmids (0.21 and 0.22 Mb) encode 4603 predicted proteins. Ten anaerobic and four aerobic aromatic degradation pathways were recognized, with the encoding genes mostly forming clusters. The presence of paralogous gene clusters (e.g., for anaerobic phenylacetate oxidation), high sequence similarities to orthologs from other strains (e.g., for anaerobic phenol metabolism) and frequent mobile genetic elements (e.g., more than 200 genes for transposases) suggest high genome plasticity and extensive lateral gene transfer during metabolic evolution of strain EbN1. Metabolic versatility is also reflected by the presence of multiple respiratory complexes. A large number of regulators, including more than 30 two-component and several FNR-type regulators, indicate a finely tuned regulatory network able to respond to the fluctuating availability of organic substrates and electron acceptors in the environment. The absence of genes required for nitrogen fixation and specific interaction with plants separates strain EbN1 ecophysiologically from the closely related nitrogen-fixing plant symbionts of the Azoarcus cluster. Supplementary material on sequence and annotation are provided at the Web page http://www.micro-genomes.mpg.de/ebn1/.

摘要

近期关于缺氧水体和土壤中芳香族及其他难降解化合物微生物降解的研究表明,属于β-变形菌纲的硝酸盐还原菌在这一过程中发挥了重要作用。在此,我们展示了代谢功能多样的代表性菌株EbN1的首个完整基因组,该菌株能代谢多种芳香族化合物,包括碳氢化合物。一个环状染色体(4.3 Mb)和两个质粒(0.21和0.22 Mb)编码4603个预测蛋白。识别出了十条厌氧和四条需氧芳香族降解途径,编码基因大多形成簇。旁系同源基因簇的存在(如用于厌氧苯乙酸氧化)、与其他菌株直系同源基因的高度序列相似性(如用于厌氧苯酚代谢)以及频繁出现的可移动遗传元件(如超过200个转座酶基因)表明,菌株EbN1在代谢进化过程中具有高度的基因组可塑性和广泛的横向基因转移。代谢的多功能性还体现在多种呼吸复合体的存在上。大量的调控因子,包括30多个双组分调控因子和几个FNR型调控因子,表明存在一个精细调节的调控网络,能够对环境中有机底物和电子受体可用性的波动做出反应。缺乏固氮所需基因以及与植物的特定相互作用,在生态生理学上使菌株EbN1与偶氮弧菌属簇中密切相关的固氮植物共生体区分开来。序列和注释的补充材料可在网页http://www.micro-genomes.mpg.de/ebn1/上获取。

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