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三种土壤杆菌生物变种的基因组序列有助于阐明细菌中多染色体基因组的进化。

Genome sequences of three agrobacterium biovars help elucidate the evolution of multichromosome genomes in bacteria.

作者信息

Slater Steven C, Goldman Barry S, Goodner Brad, Setubal João C, Farrand Stephen K, Nester Eugene W, Burr Thomas J, Banta Lois, Dickerman Allan W, Paulsen Ian, Otten Leon, Suen Garret, Welch Roy, Almeida Nalvo F, Arnold Frank, Burton Oliver T, Du Zijin, Ewing Adam, Godsy Eric, Heisel Sara, Houmiel Kathryn L, Jhaveri Jinal, Lu Jing, Miller Nancy M, Norton Stacie, Chen Qiang, Phoolcharoen Waranyoo, Ohlin Victoria, Ondrusek Dan, Pride Nicole, Stricklin Shawn L, Sun Jian, Wheeler Cathy, Wilson Lindsey, Zhu Huijun, Wood Derek W

机构信息

Virginia Bioinformatics Institute, Washington St., MC 0477, Blacksburg, VA 24060, USA.

出版信息

J Bacteriol. 2009 Apr;191(8):2501-11. doi: 10.1128/JB.01779-08. Epub 2009 Feb 27.

Abstract

The family Rhizobiaceae contains plant-associated bacteria with critical roles in ecology and agriculture. Within this family, many Rhizobium and Sinorhizobium strains are nitrogen-fixing plant mutualists, while many strains designated as Agrobacterium are plant pathogens. These contrasting lifestyles are primarily dependent on the transmissible plasmids each strain harbors. Members of the Rhizobiaceae also have diverse genome architectures that include single chromosomes, multiple chromosomes, and plasmids of various sizes. Agrobacterium strains have been divided into three biovars, based on physiological and biochemical properties. The genome of a biovar I strain, A. tumefaciens C58, has been previously sequenced. In this study, the genomes of the biovar II strain A. radiobacter K84, a commercially available biological control strain that inhibits certain pathogenic agrobacteria, and the biovar III strain A. vitis S4, a narrow-host-range strain that infects grapes and invokes a hypersensitive response on nonhost plants, were fully sequenced and annotated. Comparison with other sequenced members of the Alphaproteobacteria provides new data on the evolution of multipartite bacterial genomes. Primary chromosomes show extensive conservation of both gene content and order. In contrast, secondary chromosomes share smaller percentages of genes, and conserved gene order is restricted to short blocks. We propose that secondary chromosomes originated from an ancestral plasmid to which genes have been transferred from a progenitor primary chromosome. Similar patterns are observed in select Beta- and Gammaproteobacteria species. Together, these results define the evolution of chromosome architecture and gene content among the Rhizobiaceae and support a generalized mechanism for second-chromosome formation among bacteria.

摘要

根瘤菌科包含与植物相关的细菌,它们在生态和农业中发挥着关键作用。在这个科中,许多根瘤菌属和中华根瘤菌属菌株是与植物共生固氮的,而许多被指定为农杆菌属的菌株则是植物病原体。这些截然不同的生活方式主要取决于每个菌株所携带的可传递质粒。根瘤菌科的成员也具有多样的基因组结构,包括单条染色体、多条染色体以及各种大小的质粒。根据生理和生化特性,农杆菌菌株已被分为三个生物变种。生物变种I菌株根癌农杆菌C58的基因组先前已被测序。在本研究中,对生物变种II菌株放射形土壤杆菌K84(一种可抑制某些致病性农杆菌的市售生物防治菌株)和生物变种III菌株葡萄农杆菌S4(一种窄宿主范围菌株,可以感染葡萄并在非宿主植物上引发过敏反应)的基因组进行了全序列测定和注释。与变形菌门其他已测序成员的比较提供了关于多分体细菌基因组进化的新数据。主要染色体在基因内容和顺序上都显示出广泛的保守性。相比之下,次要染色体共享的基因比例较小,保守的基因顺序仅限于短片段。我们提出,次要染色体起源于一个祖先质粒,基因从一个祖先主要染色体转移到了该质粒上。在选定的β-和γ-变形菌物种中也观察到了类似的模式。总之,这些结果确定了根瘤菌科中染色体结构和基因内容的进化,并支持了细菌中第二条染色体形成的普遍机制。

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