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The widespread colonization island of Actinobacillus actinomycetemcomitans

机译:放线放线杆菌的广泛定居岛

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Genomic islands, such as pathogenicity islands, contribute to the evolution and diversification of microbial life(1). Here we report on the Widespread Colonization Island, which encompasses the tad (tight adherence) locus for colonization of surfaces and biofilm formation by the human pathogen Actinobacillus actinomycetemcomitans. At least 12 of the 14 genes at the tad locus are required for tenacious biofilm formation and synthesis of bundled Flp pili (fibrils) that mediate adherence. The pilin subunit(2), Flp1, remains inside the cell in tad-locus mutants, indicating that these genes encode a secretion system for export and assembly of fibrils. We found tad-related regions in a wide variety of Bacterial and Archaeal species(3), and their sequence characteristics indicate possible horizontal transfer. To test the hypothesis of horizontal transfer, we compared the phylogeny of the tad locus to a robust organismal phylogeny using statistical tests of congruence and tree reconciliation techniques. Our analysis strongly supports a complex history of gene shuffling by recombination and multiple horizontal transfers, duplications and losses. We present evidence for a specific horizontal transfer event leading to the establishment of this region as a determinant of disease. [References: 30]
机译:基因岛,例如致病岛,有助于微生物生命的进化和多样化(1)。在这里,我们报道了广泛的殖民化岛,其中涵盖了人类病原体放线菌放线菌的表面定殖和生物膜形成的tad(紧密粘附)基因座。 tad位点的14个基因中至少有12个是顽强的生物膜形成和介导粘附的成束Flp菌毛(原纤维)合成所必需的。毛蛋白亚基(2)Flp1仍保留在tad-locus突变体的细胞内,表明这些基因编码分泌系统供原纤维输出和组装。我们在各种各样的细菌和古细菌物种中发现了与tad相关的区域(3),其序列特征表明可能存在水平转移。为了检验水平转移的假设,我们使用一致性和树协调技术的统计检验将tad基因座的系统发育与稳健的生物系统发育进行了比较。我们的分析强烈支持通过重组以及多次水平转移,重复和缺失进行基因改组的复杂历史。我们提供了针对特定水平转移事件的证据,该事件导致该区域成为疾病的决定因素。 [参考:30]

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