Chrysosporum ovalisporum is synonymous with the true-branching cyanobacterium Umezakia natans (Nostocales/Aphanizomenonaceae) |
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Authors: | Glenn B. McGregor Barbara C. Sendall Yuko Niiyama Akihiro Tuji Anusuya Willis |
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Affiliation: | 1. Queensland Department of Environment and Science, Brisbane, Australia;2. Queensland Department of Health, Forensic and Scientific Services, Coopers Plains, Australia;3. Department of Botany, National Museum of Nature and Science, Ibaraki, Japan;4. Australian National Algae Culture Collection, National Collections and Marine Infrastructure, CSIRO, Hobart, Tasmania, Australia |
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Abstract: | True branching is a facultative characteristic only known from two cyanobacteria in the Aphanizomenonaceae, Umezakia natans and Dolichospermum brachiatum. In both cases, its expression has been associated with environmental stress, and its practical use as a diacritical feature has been previously evaluated. In this study, we undertook further evaluation of the phylogeny of Umezakia natans and its relationship to Chrysosporum ovalisporum as a previous study suggested the two were potentially congeneric. We used combined morphological, phylogenetic, and phylogenomic approaches to determine their relatedness using new strains available from a broad geographic range. Phylogenetic analysis based on 16S rRNA gene sequences showed that Australian C. ovalisporum and Japanese U. natans strains clustered together with accessions of C. ovalisporum originating from Australia, Israel, and Spain, with high p-distance similarity values (99.5%–99.9%). Additionally, differences between the two species in the 16S–23S ITS region was low (0%–2.5%). The average nucleotide identity of the U. natans and C. ovalisporum strains was also high (ANI of > 99.5 and AF > 0.9) and supported a genus-level separation from Chrysosporum bergii (83 ANI between clusters). Furthermore, in culture, strains of both species grown in vitamin-free media showed facultative true branching, a feature not previously known in C. ovalisporum. Collectively, the results support unification of C. ovalisporum and U. natans according to the principle of priority as Umezakia ovalisporum. |
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Keywords: | 16S rRNA 16S–23S ITS average nucleotide identity cyanobacteria cyanotoxin phylogenomics phylogeny taxonomy |
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