Glöckner G, Lehmann R, Romualdi A, Pradella S, Schulte-Spechtel U, Schilhabel M, Wilske B, Sühnel J, Platzer M
Genome Analysis, Institute for Molecular Biotechnology, Beutenbergstr. 11, 07745 Jena, Germany.
Nucleic Acids Res. 2004 Nov 16;32(20):6038-46. doi: 10.1093/nar/gkh953. Print 2004.
Three members of the genus Borrelia (B.burgdorferi, B.garinii, B.afzelii) cause tick-borne borreliosis. Depending on the Borrelia species involved, the borreliosis differs in its clinical symptoms. Comparative genomics opens up a way to elucidate the underlying differences in Borrelia species. We analysed a low redundancy whole-genome shotgun (WGS) assembly of a B.garinii strain isolated from a patient with neuroborreliosis in comparison to the B.burgdorferi genome. This analysis reveals that most of the chromosome is conserved (92.7% identity on DNA as well as on amino acid level) in the two species, and no chromosomal rearrangement or larger insertions/deletions could be observed. Furthermore, two collinear plasmids (lp54 and cp26) seem to belong to the basic genome inventory of Borrelia species. These three collinear parts of the Borrelia genome encode 861 genes, which are orthologous in the two species examined. The majority of the genetic information of the other plasmids of B.burgdorferii is also present in B.garinii although orthology is not easy to define due to a high redundancy of the plasmid fraction. Yet, we did not find counterparts of the B.burgdorferi plasmids lp36 and lp38 or their respective gene repertoire in the B.garinii genome. Thus, phenotypic differences between the two species could be attributable to the presence or absence of these two plasmids as well as to the potentially positively selected genes.
伯氏疏螺旋体属的三个成员(伯氏疏螺旋体、伽氏疏螺旋体、阿氏疏螺旋体)可引起蜱传疏螺旋体病。根据所涉及的伯氏疏螺旋体种类不同,疏螺旋体病的临床症状也有所差异。比较基因组学为阐明伯氏疏螺旋体种类之间的潜在差异开辟了一条途径。我们分析了一株从神经型疏螺旋体病患者分离出的伽氏疏螺旋体菌株的低冗余全基因组鸟枪法(WGS)组装序列,并与伯氏疏螺旋体基因组进行了比较。该分析表明,两个物种的大部分染色体是保守的(DNA以及氨基酸水平上的同一性为92.7%),未观察到染色体重排或较大的插入/缺失。此外,两个共线质粒(lp54和cp26)似乎属于伯氏疏螺旋体种类的基本基因组组成部分。伯氏疏螺旋体基因组的这三个共线部分编码861个基因,在所检测的两个物种中是直系同源的。尽管由于质粒部分的高冗余度,直系同源性不易确定,但伯氏疏螺旋体其他质粒的大部分遗传信息在伽氏疏螺旋体中也存在。然而,我们在伽氏疏螺旋体基因组中未发现伯氏疏螺旋体质粒lp36和lp38或其各自的基因库的对应物。因此,这两个物种之间的表型差异可能归因于这两个质粒的存在与否以及潜在的正选择基因。