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与强毒株相比,布鲁氏菌流产疫苗株S19的基因组序列产生了候选毒力基因。

Genome sequence of Brucella abortus vaccine strain S19 compared to virulent strains yields candidate virulence genes.

作者信息

Crasta Oswald R, Folkerts Otto, Fei Zhangjun, Mane Shrinivasrao P, Evans Clive, Martino-Catt Susan, Bricker Betsy, Yu GongXin, Du Lei, Sobral Bruno W

机构信息

Virginia Bioinformatics Institute, Virginia Tech, Blacksburg, Virginia, United States of America.

出版信息

PLoS One. 2008 May 14;3(5):e2193. doi: 10.1371/journal.pone.0002193.

Abstract

The Brucella abortus strain S19, a spontaneously attenuated strain, has been used as a vaccine strain in vaccination of cattle against brucellosis for six decades. Despite many studies, the physiological and molecular mechanisms causing the attenuation are not known. We have applied pyrosequencing technology together with conventional sequencing to rapidly and comprehensively determine the complete genome sequence of the attenuated Brucella abortus vaccine strain S19. The main goal of this study is to identify candidate virulence genes by systematic comparative analysis of the attenuated strain with the published genome sequences of two virulent and closely related strains of B. abortus, 9-941 and 2308. The two S19 chromosomes are 2,122,487 and 1,161,449 bp in length. A total of 3062 genes were identified and annotated. Pairwise and reciprocal genome comparisons resulted in a total of 263 genes that were non-identical between the S19 genome and any of the two virulent strains. Amongst these, 45 genes were consistently different between the attenuated strain and the two virulent strains but were identical amongst the virulent strains, which included only two of the 236 genes that have been implicated as virulence factors in literature. The functional analyses of the differences have revealed a total of 24 genes that may be associated with the loss of virulence in S19. Of particular relevance are four genes with more than 60 bp consistent difference in S19 compared to both the virulent strains, which, in the virulent strains, encode an outer membrane protein and three proteins involved in erythritol uptake or metabolism.

摘要

流产布鲁氏菌S19菌株是一种自发减毒株,六十年来一直被用作牛布鲁氏菌病疫苗株。尽管进行了许多研究,但导致减毒的生理和分子机制尚不清楚。我们应用焦磷酸测序技术结合传统测序方法,快速全面地确定了减毒流产布鲁氏菌疫苗株S19的完整基因组序列。本研究的主要目标是通过对减毒株与已发表的两株强毒且密切相关的流产布鲁氏菌菌株9-941和2308的基因组序列进行系统比较分析,来鉴定候选毒力基因。S19的两条染色体长度分别为2,122,487 bp和1,161,449 bp。共鉴定并注释了3062个基因。成对和相互的基因组比较结果显示,S19基因组与两株强毒株中的任何一株之间共有263个基因不同。其中,45个基因在减毒株与两株强毒株之间始终存在差异,但在强毒株之间是相同的,这45个基因中只有2个是文献中涉及的236个毒力因子基因。对这些差异的功能分析揭示了总共24个可能与S19毒力丧失相关的基因。特别相关的是4个基因,与两株强毒株相比,S19中存在超过60 bp的一致差异,在强毒株中,这4个基因编码一种外膜蛋白和三种参与赤藓醇摄取或代谢的蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdfc/2364660/8f0a9db72a21/pone.0002193.g001.jpg

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