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Telomere Exchange between Linear Replicons of Borrelia burgdorferi

机译:伯氏疏螺旋体的线性复制子之间的端粒交换

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Spirochetes in the genus Borrelia carry a linear chromosome and numerous linear plasmids that have covalently closed hairpin telomeres. The overall organization of the large chromosome of Borrelia burgdorferi appears to have been quite stable over recent evolutionary time; however, a large fraction of natural isolates carry differing lengths of DNA that extend the right end of the chromosome between about 7 and 20 kbp relative to the shortest chromosomes. We present evidence here that a rather recent nonhomologous recombination event in the B. burgdorferi strain Sh-2-82 lineage has replaced its right chromosomal telomere with a large portion of the linear plasmid lp21, which is present in the strain B31 lineage. At least two successive rounds of addition of linear plasmid genetic material to the chromosomal right end appear to have occurred at the Sh-2-82 right telomere, suggesting that this is an evolutionary mechanism by which plasmid genetic material can become part of the chromosome. The unusual nonhomologous nature of this rearrangement suggests that, barring horizontal transfer, it can be used as a unique genetic marker for this lineage of B. burgdorferi chromosomes.
机译:勃氏酵母属(Borrelia)中的螺旋体携带线性染色体和许多线性质粒,这些质粒具有共价闭合的发夹端粒。在最近的进化时期,波氏疏螺旋体大染色体的整体组织似乎相当稳定。但是,大部分自然分离株携带的DNA长度不同,相对于最短的染色体,它们在染色体的右端延伸约7至20 kbp。我们在这里提供的证据表明, B中发生了相当近期的非同源重组事件。 burgdorferi菌株Sh-2-82谱系已用B31谱系中存在的大部分线性质粒lp21取代了其右侧染色体端粒。在Sh-2-82右端粒上似乎至少连续两轮向染色体右端添加了线性质粒遗传物质,这表明这是质粒遗传物质可以成为染色体一部分的进化机制。这种重排的不同寻常的非同源性质表明,除水平转移外,它可以用作该 B谱系的独特遗传标记。 burgdorferi 染色体。

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