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Genome comparison and context analysis reveals putative mobile forms of restriction–modification systems and related rearrangements

机译:基因组比较和背景分析揭示了限制性修饰系统和相关重排的假定移动形式

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摘要

The mobility of restriction–modification (RM) gene complexes and their association with genome rearrangements is a subject of active investigation. Here we conducted systematic genome comparisons and genome context analysis on fully sequenced prokaryotic genomes to detect RM-linked genome rearrangements. RM genes were frequently found to be linked to mobility-related genes such as integrase and transposase homologs. They were flanked by direct and inverted repeats at a significantly high frequency. Insertion by long target duplication was observed for I, II, III and IV restriction types. We found several RM genes flanked by long inverted repeats, some of which had apparently inserted into a genome with a short target duplication. In some cases, only a portion of an apparently complete RM system was flanked by inverted repeats. We also found a unit composed of RM genes and an integrase homolog that integrated into a tRNA gene. An allelic substitution of a Type III system with a linked Type I and IV system pair, and allelic diversity in the putative target recognition domain of Type IIG systems were observed. This study revealed the possible mobility of all types of RM systems, and the diversity in their mobility-related organization.
机译:限制性修饰(RM)基因复合物的移动性及其与基因组重排的关联是积极研究的主题。在这里,我们对完全测序的原核基因组进行了系统的基因组比较和基因组背景分析,以检测RM连锁的基因组重排。经常发现RM基因与流动性相关基因(如整合酶和转座酶同源物)相关。它们的侧翼是频率很高的直接和反向重复。对于I,II,III和IV限制类型,观察到通过长靶标重复插入。我们发现了几个RM基因,其侧翼是长的反向重复序列,其中一些显然插入了具有短靶标重复序列的基因组中。在某些情况下,表面上完整的RM系统中只有一部分与反向重复序列相对。我们还发现了一个由RM基因和整合到tRNA基因中的整合酶同源物组成的单元。观察到III型系统被连接的I型和IV型系统对等位基因取代,以及IIG型系统推定的目标识别域中的等位基因多样性。这项研究揭示了所有类型的RM系统的可能移动性,以及它们与移动性相关的组织的多样性。

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