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High allelic diversity in the methyltransferase gene of a phase variable type III restriction-modification system has implications for the fitness of Haemophilus influenzae

机译:相变III型限制性修饰系统的甲基转移酶基因中的高等位基因多样性对流感嗜血杆菌的适应性有影响

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摘要

Phase variable restriction-modification (R-M) systems are widespread in Eubacteria. Haemophilus influenzae encodes a phase variable homolog of Type III R-M systems. Sequence analysis of this system in 22 non-typeable H.influenzae isolates revealed a hypervariable region in the central portion of the mod gene whereas the res gene was conserved. Maximum likelihood (ML) analysis indicated that most sites outside this hypervariable region experienced strong negative selection but evidence of positive selection for a few sites in adjacent regions. A phylogenetic analysis of 61 Type III mod genes revealed clustering of these H.influenzae mod alleles with mod genes from pathogenic Neisseriae and, based on sequence analysis, horizontal transfer of the mod-res complex between these species. Neisserial mod alleles also contained a hypervariable region and all mod alleles exhibited variability in the repeat tract. We propose that this hypervariable region encodes the target recognition domain (TRD) of the Mod protein and that variability results in alterations to the recognition sequence of this R-M system. We argue that the high allelic diversity and phase variable nature of this R-M system have arisen due to selective pressures exerted by diversity in bacteriophage populations but also have implications for other fitness attributes of these bacterial species.
机译:相变限制性修饰(R-M)系统在真细菌中很普遍。流感嗜血杆菌编码III型R-M系统的相变同源物。该系统在22种不可分型的流感嗜血杆菌分离物中的序列分析显示,mod基因中央部分存在高变区,而res基因却被保留。最大似然(ML)分析表明,在该高变区之外的大多数站点都经历了强烈的负选择,但是在相邻区域中的少数站点出现了正选择的证据。对61个III型mod基因的系统发育分析表明,这些流感嗜血杆菌mod等位基因与致病性奈瑟氏球菌的mod基因聚在一起,并且基于序列分析,这些物种之间的mod-res复合物水平转移。奈瑟氏球菌的等位基因也包含一个高变区,并且所有的mod等位基因在重复序列中均表现出变异性。我们建议,该高变区编码Mod蛋白的目标识别域(TRD),并且可变性导致此R-M系统的识别序列发生变化。我们认为,这种R-M系统的高等位基因多样性和相变性质是由于噬菌体种群多样性所施加的选择性压力而产生的,但也对这些细菌物种的其他适应性特征有影响。

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