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血清型Hardjo遗传亚型的脂多糖生物合成基因座比较分析:问号状钩端螺旋体Hardjoprajitno亚型和博氏钩端螺旋体Hardjobovis亚型

Comparative analysis of the LPS biosynthetic loci of the genetic subtypes of serovar Hardjo: Leptospira interrogans subtype Hardjoprajitno and Leptospira borgpetersenii subtype Hardjobovis.

作者信息

de la Peña-Moctezuma A, Bulach D M, Kalambaheti T, Adler B

机构信息

Department of Microbiology, Monash University, Clayton, Vic., Australia.

出版信息

FEMS Microbiol Lett. 1999 Aug 15;177(2):319-26. doi: 10.1111/j.1574-6968.1999.tb13749.x.

DOI:10.1111/j.1574-6968.1999.tb13749.x
PMID:10474199
Abstract

Although Leptospira borgpetersenii subtype Hardjobovis and L. interrogans subtype Hardjoprajitno belong to different species, they are serologically indistinguishable and are therefore classified as serovar Hardjo. Since LPS is the major antigen involved in serological classification, this implies that the LPS of these subtypes is identical. Comparison of the LPS biosynthetic loci (rfb) of the subtypes revealed remarkable similarity, with 32 and 31 origins of replication (orfs) in the Hardjoprajitno and Hardjobovis rfb loci, respectively. The order and orientation of these orfs were identical with the exception of an additional orf in Hardjoprajitno between orfs 4 and 5 and intergenic sequences differing between the subtypes. The Hardjoprajitno rfb locus has been divided into four intercalated regions based on sequence similarity to other leptospiral rfb loci. orfJ1-orfJ14 as well as orfJ21-orfJ22 are more similar to regions of the rfb locus of L. borgpetersenii subtype Hardjobovis. orfJ15-orfJ20 as well as orfJ23-orfJ31 are almost identical to the corresponding orfs in L. interrogans serovar Copenhageni. We propose that the progenitor Hardjoprajitno strain, containing an rfb locus which closely resembled the Copenhageni locus, acquired orfs 1-14 and orfs 21-22 from subtype Hardjobovis resulting in two serologically indistinguishable subtypes of serovar Hardjo which in turn constituted the main bovine-adapted leptospiral serovar.

摘要

尽管波氏钩端螺旋体Hardjobovis亚型和问号钩端螺旋体Hardjoprajitno亚型属于不同的种,但它们在血清学上无法区分,因此被归类为哈焦血清型。由于脂多糖(LPS)是血清学分类中涉及的主要抗原,这意味着这些亚型的LPS是相同的。对这些亚型的LPS生物合成基因座(rfb)进行比较,发现它们具有显著的相似性,Hardjoprajitno和Hardjobovis rfb基因座中分别有32个和31个复制起点(开放阅读框,orfs)。除了Hardjoprajitno中位于orf4和orf5之间有一个额外的orf以及亚型之间的基因间序列不同外,这些orfs的顺序和方向是相同的。基于与其他钩端螺旋体rfb基因座的序列相似性,Hardjoprajitno rfb基因座已被分为四个插入区域。orfJ1 - orfJ14以及orfJ21 - orfJ22与波氏钩端螺旋体Hardjobovis亚型rfb基因座的区域更相似。orfJ15 - orfJ20以及orfJ23 - orfJ31与问号钩端螺旋体哥本哈根血清型中的相应orfs几乎相同。我们提出,含有与哥本哈根血清型基因座非常相似的rfb基因座的Hardjoprajitno原始菌株,从Hardjobovis亚型获得了orf1 - 14和orf21 - 22,从而产生了哈焦血清型的两种血清学上无法区分的亚型,这两种亚型进而构成了主要的牛适应性钩端螺旋体血清型。

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