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O. Podosokorskaya

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Sep 2026

Melioribacter sulfuriphilus sp. nov., facultatively anaerobic thermophilic sulfur- and thiosulfate-respiring bacterium from Karmadon hot springs of North Ossetia (Russian Federation).

Novel facultatively anaerobic moderately thermophilic bacteria, strains OK-6-MeT and OK-1-Me, were isolated from the hot springs of Karmadon (North Ossetia, Russian Federation). Gram-stain-negative, motile rods were present singly, in rosettes, and formed biofilms. Both strains grew optimally at 55 °C, pH 7.0 and did not require sodium chloride. They were chemoorganoheterotrophs, growing on mono-, di- and polysaccharides (cellulose, xylan, lichenan, xyloglucan, mannan, locust bean gum, pectin) as well as proteinaceous substrates (gelatin, casein). Growth under anaerobic conditions was observed both in the presence and absence of external electron acceptors (sulfur, thiosulfate, nitrite, arsenate, Fe-citrate, ferrihydrite). Major cellular fatty acids of both strains were iso-C15:0, anteiso-C15:0, and anteiso-C17:0. The size of the genomes were 3.3 and 3.2 Mb for strain OK-6-MeT and OK-1-Me, respectively. Genomic DNA G + C content was 37% for both strains. According to the 16S rRNA gene sequence and conserved protein sequences phylogenies, the strains represented a new species of the genus Melioribacter of family Melioribacteraceae within the class Ignavibacteria, for which the name Melioribacter sulfuriphilus sp. nov. is proposed, with type strain OK-6-MeT (= B-3972T = CGMCC 1.18264 T = BIM B-2154T = UQM 41932T). Analysis of OK-1 and OK-6 metagenomes revealed presence of various genes involved in carbon (CO2 fixation, carbohydrate hydrolysis, hydrocarbons degradation, fermentation), nitrogen (nitrate, nitrite, NO and N2O reduction) and sulfur cycles (sulfate reduction, sulfur or thiosulfate reduction, oxidation of sulfur compounds). MAGs OK-1-035 and OK-6-024 almost identical to genomes of strain OK-1-Me and OK-6-MeT presumably are integral part of these complex trophic chains.

O. Podosokorskaya, A. Merkel, A. Novikov et al. · 0 citations
Open access Sep 2026

Novel Thermophilic Species of Limisphaera Demonstrate Facultatively Anaerobic Mode of Life and Utilize a Wide Range of Carbohydrates

Two novel facultatively anaerobic thermophilic members of the genus Limisphaera (Verrucomicrobiota), strains 4302-coT and VF2T, were isolated from terrestrial hot springs of Geyser Valley (Kamchatka) and the Lake Baikal region, Russia. Cells were motile cocci, forming aggregates; strain 4302-coT grew optimally at a range of 60–65 °C and pH 7.4 and strain VF2T at 55 °C and pH 8.5. Both were chemoorganoheterotrophs utilizing mono-, di-, and polysaccharides, including cellulose, xylan, xanthan gum, arabinan, gluco-, and galactomannans. Both grew anaerobically by fermentation or by respiration with nitrite, nitrate, ferric citrate, or ferrihydrite; dissimilatory iron reduction is reported here for the first time within the phylum Verrucomicrobiota. Their genomes encoded more than 100 glycoside hydrolases and more than 15 polysaccharide lyases, indicating high hydrolytic potential. Additionally, the metabolic pathways of sugar catabolism, fermentation, and both aerobic and anaerobic respiration were reconstructed. A GH51 glycoside hydrolase of strain 4302-coT phylogenetically related to endoglucanases was heterologously expressed and shown to be active at 70 °C with unusually broad specificity, hydrolyzing both β-1,4 and β-1,3 linkages. Based on phylogenomic analysis and phenotypic features, the strains are assigned to two novel species, for which the names Limisphaera vallis sp. nov. and Limisphaera sibirica sp. nov. are proposed.

O. Podosokorskaya, T. Sokolova, K. Zayulina et al. · 0 citations

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