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Bengtsoniella intestinalis gen. nov., sp. nov., a member of the family Oscillospiraceae, isolated from the hindgut of the marine herbivorous fish Kyphosus sydneyanus

Citation
Pardesi et al. (2024). International Journal of Systematic and Evolutionary Microbiology 74 (12)
Names
Bengtsoniella
Abstract
A Gram-stain-negative, non-spore-forming, rod-shaped, obligately anaerobic bacterium, designated strain BP47G, was isolated from the hindgut of a silver drummer (Kyphosus sydneyanus) fish collected from the Hauraki Gulf, New Zealand. Phylogenetic analysis based on the 16S rRNA gene sequence of the isolate indicated that it belonged to the family Oscillospiraceae in the phylum Bacillota. The gene sequence of BP47G was most similar to Oscillibacter valericigenes with 95.23% sequence identity. Isol
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Description of the first marine-isolated member of the under-represented phylum Gemmatimonadota , and the environmental distribution and ecogenomics of Gaopeijiales ord. nov

Citation
Ye et al. (2024). mSystems 9 (12)
Names
Gaopeijia Gaopeijiaceae Gaopeijiales
Abstract
ABSTRACT The phylum Gemmatimonadota is widespread but rarely cultured and, in fact, there are only six described species isolated from soil, freshwater, and wastewater treatment. However, no isolates of Gemmatimonadota from marine environment have been described; thus, little is known about the physiology and metabolism of members of the marine lineages. In this study, four novel facultativ
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Identification of a Highly Expressed Gene Cluster Likely Coding for Benzene Activation Enzymes in a Methanogenic Enrichment Culture

Citation
Toth et al. (2024).
Names
“Benzenivorax”
Abstract
ABSTRACT The Oil Refinery (OR) consortium is a model methanogenic enrichment culture used to study anaerobic benzene degradation. Over half of the culture’s bacterial community consists of two closely related Desulfobacterota strains, designated ORM2a and ORM2b, whose mechanisms of benzene activation are unknown. Two new metagenomes, including a complete circularized metagenome-assembled genome (MAG) for ORM2a, enabled a thorough investigation of this culture’s proteome. Among the pr
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Chromosome-level Assemblies of Three Candidatus Liberibacter solanacearum Vectors: Dyspersa apicalis, Dyspersa pallida, and Trioza urticae (Hemiptera: Psylloidea)

Citation
Heaven et al. (2024).
Names
Ca. Carsonella ruddii “Liberibacter solanacearum”
Abstract
Psyllids are major vectors of plant diseases, including Candidatus Liberibacter solanacearum (CLso), the bacterial agent associated with 'zebra chip' disease in potatoes and 'carrot yellows' disease in carrot. Despite their agricultural significance, there is limited knowledge on the genome structure and genetic diversity of psyllids. In this study, we provide chromosome-level genome assemblies for three psyllid species known to transmit CLso: Dyspersa apicalis (carrot psyllid), Dyspersa pallida
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Methanochimaera problematica gen. nov., sp. nov., a novel methanoarchaeon isolated from cold seep sediment and reclassification of Methanomicrobium antiquum as Methanoeremita antiquus gen. nov., comb. nov

Citation
Zhou et al. (2024). International Journal of Systematic and Evolutionary Microbiology 74 (12)
Names
Methanochimaera Methanoeremita
Abstract
A hydrogenotrophic methanoarchaeon, designated strain FWC-SCC4T, was isolated from cold seep sediment of Four-Way Closure Ridge, offshore southwestern Taiwan. Strain FWC-SCC4Tutilizes H2/CO2 or formate, but not acetate, secondary alcohols, methylamines, methanol or ethanol for growth and methane production. Yeast extract is required for growth. The cell morphology is coccoid, with a diameter of 0.8–1.2 µm, and the cell envelope is composed of S-layer protein with Mr about 137.00 kDa. Cells posse
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The complete genome sequence of the crayfish pathogen CandidatusParacoxiella cheracisn.g. n.sp. provides insight into pathogenesis and the phylogeny of the Coxiellaceae family

Citation
Ingle et al. (2024).
Names
“Paracoxiella cheracis” “Paracoxiella”
Abstract
ABSTRACTThe Coxiellaceae bacterial family, within the order Legionellales, is defined by a collection of poorly characterized obligate intracellular bacteria. The zoonotic pathogen and causative agent of human Q fever,Coxiella burnetii, represents the best characterized member of this family. Coxiellaceae establish replicative niches within diverse host cells and rely on their host for survival, making them challenging to isolate and cultivate within a laboratory setting. Here we describe a new
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