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<i>Knoellia altitudinis</i> sp. nov., <i>Knoellia pratensis</i> sp. nov., <i>Knoellia terrae</i> sp. nov. and <i>Knoellia tibetensis</i> sp. nov., four novel UV radiation-resistant actinobacteria isolated from Tibet Autonomous Region, China

Zhang J, Mou T, Li CJ, et al.

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Abstract

Four Gram-stain-positive, aerobic, non-motile and non-spore-forming actinobacterial strains (CPCC 206391<sup>T</sup>, CPCC 206453<sup>T</sup>, CPCC 206435<sup>T</sup> and CPCC 206450<sup>T</sup>) were isolated from soil samples collected from Tibet Autonomous Region, China. The 16S rRNA gene sequences of these four strains showed close relations to members of the genus <i>Knoellia</i> of the family <i>Intrasporangiaceae</i>, with similarities of 96.1-99.4% to the validly named species of <i>Knoellia</i>. In the phylogenetic trees based on 16S rRNA gene sequences and the core genome, these isolates clustered into the genus <i>Knoellia</i> clade within the lineage of the family <i>Intrasporangiaceae</i>. Genome relatedness index values between these strains and their phylogenetic neighbours, including average nucleotide identity (78.1-91.5%) and digital DNA-DNA hybridization (19.8-41.0%), were all below the species delineation thresholds. These genomic data, combined with their phenotypic characteristics, supported their classification within the genus <i>Knoellia</i>, representing four novel species. Thereby, <i>Knoellia altitudinis</i> sp. nov. (type strain CPCC 206391<sup>T</sup>=XZ253<sup>T</sup>=KCTC 59139<sup>T</sup>), <i>Knoellia pratensis</i> sp. nov. (type strain CPCC 206453<sup>T</sup>=CXZ644<sup>T</sup>=KCTC 59274<sup>T</sup>), <i>Knoellia terrae</i> sp. nov. (type strain CPCC 206435<sup>T</sup>=CXZ904<sup>T</sup>=KCTC 59271<sup>T</sup>) and <i>Knoellia tibetensis</i> sp. nov. (type strain CPCC 206450<sup>T</sup>=XZ100<sup>T</sup>=KCTC 59273<sup>T</sup>) were proposed. These strains exhibited stable growth under high-intensity UV radiation, attributed to the presence of <i>uvrABC</i> and <i>recAFNOQR</i> genes involved in UV resistance and DNA repair. These features indicate the <i>Knoellia</i> spp<i>.</i> adaptation to high UV radiation environments.

Keywords

Genome polyphasic taxonomy Uv Radiation Tolerance Knoellia