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The taxonomic identity of two well-documented pseudanabaenalean strains, sp. PCC 7367 and sp. PCC 7403, isolated from the samples collected from the surface of a snail shell in an intertidal zone and sphagnum bog, respectively, was reassessed using a polyphasic approach. The results from the morphological, phylogenetic, ITS rRNA and genomic analyses confirmed that PCC 7367 (=BACA0810) and PCC 7403 (=BACA0811) represent novel species of the monotypic pseudanabaenalean genera and , respectively, for which we propose the names sp. nov. and sp. nov. in accordance with the International Code of Nomenclature of Prokaryotes. The analysis of the 16S-23S ITS rRNA region, a widely used genetic marker for the delineation of closely related species, effectively distinguished the species. However, the closely related species within could not be demarcated using the currently accepted nucleotide dissimilarity cutoff for species delineation but were clearly distinguished through genomic analyses. Accordingly, a revised ITS rRNA nucleotide dissimilarity cutoff is proposed for species delineation within the genus . Furthermore, genomic investigations revealed that the predicted biosynthetic gene clusters in the genome assemblies of PCC 7367 and PCC 7403 were not associated with any known natural products.
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http://dx.doi.org/10.1099/ijsem.0.006869 | DOI Listing |
Int J Syst Evol Microbiol
August 2025
Institut Pasteur, Université Paris Cité, Collection of Cyanobacteria, F-75015 Paris, France.
The taxonomic identity of two well-documented pseudanabaenalean strains, sp. PCC 7367 and sp. PCC 7403, isolated from the samples collected from the surface of a snail shell in an intertidal zone and sphagnum bog, respectively, was reassessed using a polyphasic approach.
View Article and Find Full Text PDFEnviron Microbiol
November 2022
Department of Biochemistry and Molecular Biology, Faculty of Science, Saitama University, Saitama, Japan.
The cyanobacterium Anabaena sp. strain PCC 7120 exhibits dehydration tolerance. The regulation of gene expression in response to dehydration is crucial for the acquisition of dehydration tolerance, but the molecular mechanisms underlying dehydration responses remain unknown.
View Article and Find Full Text PDFMol Microbiol
October 2020
Department of Biological Sciences, Graduate School of Science, Tokyo Metropolitan University, Tokyo, Japan.
Heterocysts are terminally differentiated cells of filamentous cyanobacteria, which are specialized for nitrogen fixation. Because nitrogenase is easily inactivated by oxygen, the intracellular environment of heterocysts is kept microoxic. In heterocysts, the oxygen-evolving photosystem II is inactivated, a heterocyst-specific envelope with an outer polysaccharide layer and an inner glycolipid layer is formed to limit oxygen entry, and oxygen consumption is activated.
View Article and Find Full Text PDFJ Bacteriol
September 2019
Department of Biological Sciences, Graduate School of Science, Tokyo Metropolitan University, Tokyo, Japan
Cyanobacteria are monophyletic organisms that perform oxygenic photosynthesis. While they exhibit great diversity, they have a common set of genes. However, the essentiality of them for viability has hampered the elucidation of their functions.
View Article and Find Full Text PDFACS Synth Biol
April 2019
Department of Biological Sciences, Graduate School of Science , Tokyo Metropolitan University, 1-1 Minami-Osawa , Hachioji , Tokyo 192-0397 , Japan.
The heterocyst-forming multicellular cyanobacterium Anabaena sp. PCC 7120 is often used as a model organism for prokaryotic cell differentiation. We recently demonstrated that heterocysts are suitable for photosynthetic production of valuable chemicals, such as ethanol, due to their active catabolism and microoxic conditions.
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