Caudill Mitchell T, Brayton Kelly A
Program in Genomics, Department of Veterinary Microbiology and Pathology, Washington State University, Pullman, WA 99164, USA.
Center for One Health Research, Virginia-Maryland College of Veterinary Medicine, Blacksburg, VA 24060, USA.
Microorganisms. 2022 Mar 12;10(3):605. doi: 10.3390/microorganisms10030605.
With the advent of cheaper, high-throughput sequencing technologies, the ability to survey biodiversity in previously unexplored niches and geographies has expanded massively. Within , a genus containing several intra-hematopoietic pathogens of medical and economic importance, at least 25 new species have been proposed since the last formal taxonomic organization. Given the obligate intracellular nature of these bacteria, none of these proposed species have been able to attain formal standing in the nomenclature per the International Code of Nomenclature of Prokaryotes rules. Many novel species' proposals use sequence data obtained from targeted or metagenomic PCR studies of only a few genes, most commonly the 16S rRNA gene. We examined the utility of the 16S rRNA gene sequence for discriminating samples to the species level. We find that while the genetic diversity of the genus appears greater than appreciated in the last organization of the genus, caution must be used when attempting to resolve to a species descriptor from the 16S rRNA gene alone. Specifically, genomically distinct species have similar 16S rRNA gene sequences, especially when only partial amplicons of the 16S rRNA are used. Furthermore, we provide key bases that allow classification of the formally named species of .
随着更廉价的高通量测序技术的出现,在以前未被探索的生态位和地理区域中调查生物多样性的能力得到了极大扩展。在包含几种具有医学和经济重要性的造血内病原体的属中,自上次正式分类组织以来,至少已提出25个新物种。鉴于这些细菌的专性细胞内性质,根据《国际原核生物命名法典》规则,这些提议的物种均未能在命名法中获得正式地位。许多新物种的提议使用仅从少数基因(最常见的是16S rRNA基因)的靶向或宏基因组PCR研究中获得的序列数据。我们研究了16S rRNA基因序列在将样本区分到物种水平上的效用。我们发现,虽然该属的遗传多样性似乎比该属上次分类时所认识到的更大,但仅从16S rRNA基因尝试解析到物种描述符时必须谨慎。具体而言,基因组上不同的物种具有相似的16S rRNA基因序列,尤其是当仅使用16S rRNA的部分扩增子时。此外,我们提供了允许对该属的正式命名物种进行分类的关键碱基。