水平基因转移
生物
基因组
基因组
基因
古细菌
系统发育树
背景(考古学)
计算生物学
DNA
细菌
遗传学
基因组DNA
细菌基因组大小
DNA测序
古生物学
作者
Lianrong Wang,Shi Chen,Kevin L. Vergin,Stephen J. Giovannoni,Simon W. L. Chan,Michael S. DeMott,Koli Taghizadeh,Otto X. Cordero,Michael Cutler,Sonia Timberlake,Eric J. Alm,Martin F. Polz,Jarone Pinhassi,Zixin Deng,Peter C. Dedon
标识
DOI:10.1073/pnas.1017261108
摘要
Phosphorothioate (PT) modification of DNA, with sulfur replacing a nonbridging phosphate oxygen, was recently discovered as a product of the dnd genes found in bacteria and archaea. Given our limited understanding of the biological function of PT modifications, including sequence context, genomic frequencies, and relationships to the diversity of dnd gene clusters, we undertook a quantitative study of PT modifications in prokaryotic genomes using a liquid chromatography-coupled tandem quadrupole mass spectrometry approach. The results revealed a diversity of unique PT sequence contexts and three discrete genomic frequencies in a wide range of bacteria. Metagenomic analyses of PT modifications revealed unique ecological distributions, and a phylogenetic comparison of dnd genes and PT sequence contexts strongly supports the horizontal transfer of dnd genes. These results are consistent with the involvement of PT modifications in a type of restriction-modification system with wide distribution in prokaryotes.
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