Santos Roselane Gonçalves Dos, Hurtado Raquel, Rodrigues Diego Lucas Neres, Lima Alessandra, Dos Anjos William Ferreira, Rifici Claudia, Attili Anna Rita, Tiwari Sandeep, Jaiswal Arun Kumar, Spier Sharon J, Mazzullo Giuseppe, Morais-Rodrigues Francielly, Gomide Anne Cybelle Pinto, de Jesus Luís Cláudio Lima, Aburjaile Flavia Figueira, Brenig Bertram, Cuteri Vincenzo, Castro Thiago Luiz de Paula, Seyffert Núbia, Santos Anderson, Góes-Neto Aristóteles, de Jesus Sousa Thiago, Azevedo Vasco
Cellular and Molecular Genetics Laboratory, Institute of Biological Sciences, Federal University of Minas Gerais, Belo Horizonte, MG, Brazil.
Cellular and Molecular Genetics Laboratory, Institute of Biological Sciences, Federal University of Minas Gerais, Belo Horizonte, MG, Brazil.
Res Microbiol. 2023 Mar-Apr;174(3):103998. doi: 10.1016/j.resmic.2022.103998. Epub 2022 Nov 11.
Dietzia strains are widely distributed in the environment, presenting an opportunistic role, and some species have undetermined taxonomic characteristics. Here, we propose the existence of errors in the classification of species in this genus using comparative genomics. We performed ANI, dDDH, pangenome and genomic plasticity analyses better to elucidate the phylogenomic relationships between Dietzia strains. For this, we used 55 genomes of Dietzia downloaded from public databases that were combined with a newly sequenced. Sequence analysis of a phylogenetic tree based on genome similarity comparisons and dDDH, ANI analyses supported grouping different Dietzia species into four distinct groups. The pangenome analysis corroborated the classification of these groups, supporting the idea that some species of Dietzia could be reassigned in a possible classification into three distinct species, each containing less variability than that found within the global pangenome of all strains. Additionally, analysis of genomic plasticity based on groups containing Dietzia strains found differences in the presence and absence of symbiotic Islands and pathogenic islands related to their isolation site. We propose that the comparison of pangenome subsets together with phylogenomic approaches can be used as an alternative for the classification and differentiation of new species of the genus Dietzia.
迪茨氏菌菌株广泛分布于环境中,具有机会性致病作用,且一些物种具有未确定的分类学特征。在此,我们通过比较基因组学提出该属物种分类中存在错误。我们进行了ANI、dDDH、泛基因组和基因组可塑性分析,以更好地阐明迪茨氏菌菌株之间的系统发育关系。为此,我们使用了从公共数据库下载的55个迪茨氏菌基因组,并将其与新测序的基因组相结合。基于基因组相似性比较、dDDH和ANI分析构建的系统发育树的序列分析支持将不同的迪茨氏菌物种分为四个不同的组。泛基因组分析证实了这些组的分类,支持了迪茨氏菌的一些物种可能在一个可能的分类中重新划分为三个不同物种的观点,每个物种的变异性都低于所有菌株的全球泛基因组中的变异性。此外,基于包含迪茨氏菌菌株的组的基因组可塑性分析发现,与其分离位点相关的共生岛和致病岛的存在与否存在差异。我们提出,泛基因组子集的比较与系统发育方法相结合可作为迪茨氏菌属新物种分类和区分的一种替代方法。