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Authors Merkel

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Merkel, Alexander Y.


Publications
24

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CitationNamesAbstract
Candidatus Methanohalarchaeum Sorokin, Merkel (2019). Bergey's Manual of Systematics of Archaea and Bacteria Ca. Methanohalarchaeum
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Methanonatronarchaeum thermophilum gen. nov., sp. nov. and 'Candidatus Methanohalarchaeum thermophilum', extremely halo(natrono)philic methyl-reducing methanogens from hypersaline lakes comprising a new euryarchaeal class Methanonatronarchaeia classis nov Sorokin et al. (2018). International Journal of Systematic and Evolutionary Microbiology 68 (7) “Methanohalarchaeum thermophilum” Methanonatronarchaeia Methanonatronarchaeales Methanonatronarchaeaceae
Discovery of extremely halophilic, methyl-reducing euryarchaea provides insights into the evolutionary origin of methanogenesis Sorokin et al. (2017). Nature Microbiology 2 (8) “Methanohalarchaeum thermophilum”
Characterization of <scp>M</scp> elioribacter roseus gen. nov., sp. nov., a novel facultatively anaerobic thermophilic cellulolytic bacterium from the class <scp>I</scp> gnavibacteria , and a proposal of a novel bacterial phylum <scp>I</scp> gnavibacteriae Podosokorskaya et al. (2013). Environmental Microbiology 15 (6) Ignavibacteriota
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Candidatus Methanohalarchaeum
Abstract Me.tha.no.hal'ar.chae.um N.L. neut. n. methanum methane; N.L. pref. methano ‐ pertaining to methane; Gr. masc. n. hals, halos salt; N.L. neut. n. archaeum (pertaining to archaios, ‐e, ‐on) ancient; N.L. neut. n. Methanohalarchaeum a salt‐loving archaeon forming methane. The candidate genus Ca . Methanohalarchaeum includes obligately anaerobic, extremely halophilic, neutrophilic, and moderately thermophilic methanogens with small coccoid cells producing methane by reduction of C 1 ‐methylated compounds using either H 2 or formate as electron donors. Amino acids or acetate is required as C‐source for assimilation. Core membrane lipids are represented by diphytanyl glycerol tetra‐ and diethers. Cells accumulate potassium as a compatible solute. They inhabit hypersaline lakes or salterns with neutral pH. The genus contains a single candidate species Ca . M. thermophilum, which is the type species. It is a member of the class Methanonatronarchaeia within a newly proposed phylum Halobacteriota (formerly part of the phylum Euryarchaeota ). DNA G + C content (mol%) : 35.4 (genome of the type strain). Type species : Ca . Methanohalarchaeum thermophilum Sorokin, Merkel, Abbas, Makarova, Rijpstra et al. 2018, 2206. Taxonomic and Nomenclature Notes According to the List of Prokaryotic names with Standing in Nomenclature (LPSN), the taxonomic status of the genus Candidatus Methanohalarchaeum is: preferred name (not correct name) (last update, February 2025) * . LPSN classification: Archaea / Methanobacteriati / Methanobacteriota / Methanonatronarchaeia / Methanonatronarchaeales / Methanonatronarchaeaceae / Candidatus Methanohalarchaeum The genus Candidatus Methanohalarchaeum can also be recovered in the Genome Taxonomy Database (GTDB) as g__Methanohalarchaeum (version v220) ** . GTDB classification: d__Archaea / p__Halobacteriota / c__Methanonatronarchaeia / o__Methanonatronarchaeales / f__Methanonatronarchaeaceae / g__Methanohalarchaeum * Meier‐Kolthoff et al. ( 2022 ). Nucleic Acids Res , 50 , D801 – D807 ; DOI: 10.1093/nar/gkab902 ** Parks et al. ( 2022 ). Nucleic Acids Res , 50 , D785 – D794 ; DOI: 10.1093/nar/gkab776
Characterization of <scp>M</scp> elioribacter roseus gen. nov., sp. nov., a novel facultatively anaerobic thermophilic cellulolytic bacterium from the class <scp>I</scp> gnavibacteria , and a proposal of a novel bacterial phylum <scp>I</scp> gnavibacteriae
Summary A novel moderately thermophilic, facultatively anaerobic chemoorganotrophic bacterium strain P3M ‐2 T was isolated from a microbial mat developing on the wooden surface of a chute under the flow of hot water (46° C ) coming out of a 2775‐m‐deep oil exploration well ( T omsk region, R ussia). Strain P3M ‐2 T is a moderate thermophile and facultative anaerobe growing on mono‐, di‐ or polysaccharides by aerobic respiration, fermentation or by reducing diverse electron acceptors [nitrite, F e( III ), As ( V )]. Its closest cultivated relative (90.8% rRNA gene sequence identity) is I gnavibacterium album , the only chemoorganotrophic member of the phylum C hlorobi . New genus and species M elioribacter roseus are proposed for isolate P3M ‐2 T . Together with I . album , the new organism represents the class I gnavibacteria assigned to the phylum Chlorobi . The revealed group includes a variety of uncultured environmental clones, the 16S rRNA gene sequences of some of which have been previously attributed to the candidate division ZB1 . Phylogenetic analysis of M . roseus and I . album based on their 23S rRNA and RecA sequences confirmed that these two organisms could represent an even deeper, phylum‐level lineage. Hence, we propose a new phylum Ignavibacteriae within the Bacteroidetes – C hlorobi group with a sole class I gnavibacteria , two families I gnavibacteriaceae and M elioribacteraceae and two species I . album and M . roseus . This proposal correlates with chemotaxonomic data and phenotypic differences of both organisms from other cultured representatives of C hlorobi . The most essential differences, supported by the analyses of complete genomes of both organisms, are motility, facultatively anaerobic and obligately organotrophic mode of life, the absence of chlorosomes and the apparent inability to grow phototrophically.
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