Jdeed Ghadeer, Morozova Vera V, Tikunova Nina V
Institute of Chemical Biology and Fundamental Medicine, Siberian Branch of Russian Academy of Sciences, Prosp. Lavrentieva 8, Novosibirsk 630090, Russia.
Viruses. 2024 Dec 10;16(12):1903. doi: 10.3390/v16121903.
Anti-phage defense systems are widespread in bacteria due to the latter continuous adaptation to infection by bacteriophages (phages). has a high degree of intrinsic antibiotic resistance, which makes phage therapy relevant for the treatment of infections caused by this species. Studying the array of anti-phage defense systems that could be found in helps in better adapting the phages to the systems present in the pathogenic bacteria. Pangenome analysis of the available strains with complete genomes that were downloaded from GenBank, including five local genomes, indicated a wide set of 72 defense systems and subsystems that varied between the strains. Seven of these systems were present in more than 20% of the studied genomes and the proteins encoded by the systems were variable in most of the cases. A total of 27 defense islands were revealed where defense systems were found; however, more than 60% of the instances of systems were found in four defense islands. Several elements linked to the transfer of these systems were found. No obvious associations between the pattern of distribution of the anti-phage defense systems of and the phylogenetic features or the isolation site were found.
由于细菌不断适应噬菌体感染,抗噬菌体防御系统在细菌中广泛存在。[细菌名称]具有高度的固有抗生素抗性,这使得噬菌体疗法与该物种引起的感染治疗相关。研究在[细菌名称]中可发现的抗噬菌体防御系统阵列,有助于使噬菌体更好地适应病原菌中存在的系统。对从GenBank下载的包括五个本地基因组在内的具有完整基因组的可用[细菌名称]菌株进行泛基因组分析,结果表明存在72种防御系统和子系统,这些系统在菌株之间各不相同。其中七种系统存在于超过20%的研究基因组中,并且在大多数情况下,这些系统编码的蛋白质是可变的。总共发现了27个防御岛,在这些防御岛中发现了防御系统;然而,超过60%的系统实例存在于四个防御岛中。发现了与这些系统转移相关的几个元件。未发现[细菌名称]抗噬菌体防御系统的分布模式与系统发育特征或分离位点之间存在明显关联。