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Sokolov, A. O.

Publications and source records attributed to Sokolov, A. O..

2 recordsLinked to original sources

Elimination of contamination in the published 16S rRNA gene sequence of Rothia amarae type strain J18T during phylogenetic studies of a bacterial isolate from a suspension cell culture of Arabidopsis thaliana (Heynh.)

In our phylogenetic studies of a bacterial strain isolated from an Arabidopsis suspension culture, we obtained convincing evidence for contamination of the published 16S rRNA gene sequence of Rothia amarae type strain J18T (GenBank AY043359.1). Correction of this sequence by deleting the contamination region eliminated contradictions in bioinformatic results that included comparisons of the small-subunit (SSU) rRNA secondary structures. Further, correction of the contaminated sequence yielded sequence identity values for the 16S rRNA genes of the isolate and R. amarae type strain J18T (and more than a dozen other R. amarae members) above the threshold for species demarcation. The phylogram of the 16S rRNA gene sequences of the type strains closely related to the isolate under study (interspecies sequence identity values, 96-98.7%) united members of the family Micrococcaceae (the genera Rothia, Kocuria and Arthrobacter). A great diversity of habitat conditions was noted for these bacteria, isolated from animals, soil, aqueous media, plant tissues and other sources. This applies, in particular, to R. amarae members that are most closely related to the isolate under study by the 16S rRNA gene sequence criterion (sequence identity, near 100%) and belong to four ecotypes: Antarctic, aquatic, soil and endophytic.

microbiology↗

Phylogenetic analysis of a bacterial strain of the genus Rothia detected in suspension culture cells of Arabidopsis thaliana (L.) Heynh as a member of the family Micrococcaceae

We report phylogenetic studies of a bacterial isolate (Isolate SG) recovered from a suspension culture of Arabidopsis thaliana (L.) Heynh. In doing this, we use the known results acquired by whole genome sequencing of the DNA of Micrococcaceae strains closely related to Isolate SG in the 16S rRNA gene test and we evaluate the intra- and intergeneric taxonomic relationships between them using a set of five whole genome tests (ANI, AAI, MiGA, GTDB-Tk, and AAI-profiler). Quantitative analysis of the clustering of the proteomes of these strains by the average amino acid identity (AAI)-based test showed the need to clarify (with possible renaming) the generic assignment of the strains both within and between the identified monophyletic groups. The need for such reclassification was also shown by the AAI-profiler test (Medlar et al., 2018) against the UniProt database (250 million records) with the proteome of Rothia sp. ND6WE1A - a strain most evolutionarily similar to Isolate SG. The contradictions in the historically given names of strains and metagenomic objects at the genus and family levels, which were identified by using sets of the genomes and proteomes of the strains related to Isolate SG, can be eliminated with appropriate reclassification of the objects by using quantitative criteria in the AAI-based tests.

microbiology↗