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cognitis nomina
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Authors Kusada

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Kusada, Hiroyuki


Publications
2

CitationNamesAbstract
Roseiterribacter gracilis gen. nov., sp. nov., a novel filterable alphaproteobacterium isolated from soil using a gel-filled microwell array device Nakai et al. (2024). PLOS ONE 19 (6) Roseiterribacter Roseiterribacteraceae
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Isolation of a member of the candidate phylum ‘Atribacteria’ reveals a unique cell membrane structure Katayama et al. (2020). Nature Communications 11 (1) Atribacterota Atribacteria Atribacter
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Roseiterribacter gracilis gen. nov., sp. nov., a novel filterable alphaproteobacterium isolated from soil using a gel-filled microwell array device
Our previous studies indicate the abundant and diverse presence of yet-to-be-cultured microorganisms in the micropore-filtered fractions of various environmental samples. Here, we isolated a novel bacterium (designated as strain TMPK1T) from a 0.45-μm-filtered soil suspension by using a gel-filled microwell array device comprising 900 microwells and characterized its phylogenetic and physiological features. This strain showed low 16S rRNA gene sequence identities (<91%) and low average nucleotide identity values (<70%) to the closest validly described species, and belonged to a novel-family-level lineage within the orderRhodospirillalesofAlphaproteobacteria. Strain TMPK1Texhibited small cell sizes (0.08–0.23 μm3) and had a high cyclopropane fatty acid content (>13%), and these characteristics were differentiated from otherRhodospirillalesbacteria. A comprehensive habitability search using amplicon datasets suggested that TMPK1Tand its close relatives are mainly distributed in soil and plant-associated environments. Based on these results, we propose that strain TMPK1Trepresents a novel genus and species namedRoseiterribacter gracilisgen. nov., sp. nov. (JCM 34627T= KCTC 82790T). We also proposeRoseiterribacteraceaefam. nov. to accommodate the genusRoseiterribacter.
Isolation of a member of the candidate phylum ‘Atribacteria’ reveals a unique cell membrane structure
AbstractA key feature that differentiates prokaryotic cells from eukaryotes is the absence of an intracellular membrane surrounding the chromosomal DNA. Here, we isolate a member of the ubiquitous, yet-to-be-cultivated phylum ‘Candidatus Atribacteria’ (also known as OP9) that has an intracytoplasmic membrane apparently surrounding the nucleoid. The isolate, RT761, is a subsurface-derived anaerobic bacterium that appears to have three lipid membrane-like layers, as shown by cryo-electron tomography. Our observations are consistent with a classical gram-negative structure with an additional intracytoplasmic membrane. However, further studies are needed to provide conclusive evidence for this unique intracellular structure. The RT761 genome encodes proteins with features that might be related to the complex cellular structure, including: N-terminal extensions in proteins involved in important processes (such as cell-division protein FtsZ); one of the highest percentages of transmembrane proteins among gram-negative bacteria; and predicted Sec-secreted proteins with unique signal peptides. Physiologically, RT761 primarily produces hydrogen for electron disposal during sugar degradation, and co-cultivation with a hydrogen-scavenging methanogen improves growth. We propose RT761 as a new species, Atribacter laminatus gen. nov. sp. nov. and a new phylum, Atribacterota phy. nov.
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