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Single-nucleus transcriptomics reveals the cellular immune responses to Candidatus Liberibacter asiaticus in rough lemon

Citation
Tian et al. (2025). Horticulture Research
Names
Ca. Liberibacter asiaticus
Abstract
Abstract Citrus Huanglongbing (HLB) is the most destructive disease in citriculture, mainly caused by Candidatus Liberibacter asiaticus (CLas). However, the immune response of citrus to CLas at the cellular level remains to be elucidated. In this study, the first single-cell atlas of rough lemon (Citrus jambhiri Lush.) root apexes were generated using single-nucleus RNA sequencing at 20 weeks post-inoculation with CLas. According to gene expression patterns, the single-cell atlas
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Kalymmatonema gen. nov. (Scytonemataceae, Cyanobacteria): A desert soil crust genus previously identified as Scytonema hyalinum , with description of seven species new to science

Citation
Bohunická et al. (2025). Journal of Phycology 61 (5)
Names
Kalymmatonema Kalymmatonema desertorum T Kalymmatonema oahuense Kalymmatonema mateoae Kalymmatonema hyalinum Kalymmatonema gypsitolerans Kalymmatonema ethiopiense Kalymmatonema chimaera Kalymmatonema arcangelii
Abstract
Abstract Numerous cyanobacterial strains previously identified as Scytonema hyalinum were determined to be phylogenetically distant from the type species of Scytonema, S. hofmannii . Morphological and molecular evidence suggests this distinct clade necessitates placement in a new genus, and we have described Kalymmatonema gen. nov. herein.
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Genomics and Transcriptomics of Candidatus Phytoplasma Asteris Induced Sesame Phyllody Modulating Hormonal and Defense Alterations

Citation
Karan et al. (2025). Journal of Basic Microbiology 65 (10)
Names
Ca. Phytoplasma asteris Ca. Phytoplasma Ca. Phytoplasma australasia Ca. Phytoplasma citri
Abstract
ABSTRACTSesame phyllody, a destructive disease caused by phytoplasma infection, induces severe morphological abnormalities, including floral virescence, phyllody, witches' broom, leaf deformation, and stunted growth. This study aimed to characterize phytoplasma isolates from diverse regions of India, identifying them as Candidatus Phytoplasma asteris (16Sr‐I), Candidatus Phytoplasma citri (16Sr‐II), and Candidatus Phytoplasma australasia (16Sr‐II). Whole‐genome sequencing of Candidatus Phytoplas
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The Endosymbiont Consortia of Two Cixiidae Planthoppers Reveal an Ancient Symbiosis With ‘ Candidatus Mirabilia Symbiotica’

Citation
Dittmer et al. (2025). Environmental Microbiology Reports 17 (5)
Names
“Purcelliella pentastirinorum” Ca. Karelsulcia muelleri Ca. Mirabilia Ca. Mirabilia symbiotica Ca. Vidania fulgoroideae
Abstract
ABSTRACT Insects of the suborder Auchenorrhyncha harbour multiple ancient endosymbionts that jointly produce essential nutrients lacking from the host's diet. Compared to cicadas, leafhoppers, and spittlebugs, our understanding of the multipartite symbioses among planthoppers, an extremely diverse insect group, is still very limited. Herein, we assembled the genomes of the primary endosymbionts of two planthopper species from the Cixiidae family,
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Proposal of Allobogoriella gen. nov., Allobogoriella caseilytica comb. nov., Allostella gen. nov., Allostella humosa comb. nov. and Allostella vacuolata comb. nov. as replacement names for the illegitimate prokaryotic names Bogoriella, Bogoriella caseilytica, Stella, Stella humosa and Stella vacuolata, respectively

Citation
Deshmukh, Oren (2025). International Journal of Systematic and Evolutionary Microbiology 75 (10)
Names
Allobogoriellaceae Allostellaceae
Abstract
The prokaryotic generic names Bogoriella Groth et al. 1997 and Stella Vasilyeva 1985 are illegitimate because they are later homonyms of the genus names Bogoriella Zahlbr. 1928 (Ascomycota) and Stella Massee 1889 (Basidiomycota) (Principle 2 and Rule 51b(4) of the International Code of Nomenclature of Prokaryotes). We therefore propose the replacement names Allobogoriella gen. nov., Allobogoriella caseilytica comb. nov., Allobogoriellaceae fam. nov., Allobogoriellales ord. nov., Allostella gen.
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Galleria mellonella possesses the essential nutritional needs to host the fastidious Huanglongbing bacterial pathogen ‘Candidatus Liberibacter asiaticus’

Citation
Killiny et al. (2025). Communications Biology 8 (1)
Names
Ca. Liberibacter asiaticus
Abstract
Abstract Citrus greening disease, caused by ‘Candidatus Liberibacter asiaticus’, severely impacts citrus production worldwide. The development of sustainable control strategies for this disease is restricted by the unavailability of the bacterium in pure culture. Herein, the metabolic profile of the waxworm larvae, Galleria mellonella, was compared to that of Diaphorina citri, the vector of ‘Ca. L. asiaticus’. Our findings showed that G. mellonella larvae possess the nutritional needs
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Ecophysiology and niche differentiation of three genera of polyphosphate-accumulating bacteria in a full-scale wastewater treatment plant

Citation
Kondrotaite et al. (2025). mSystems 10 (9)
Names
Azonexus amarohabitans Phosphoribacter freyrii Phosphoribacter thorii Phosphoribacter tyrii Azonexus phosphoriphilus Azonexus defluvii Phosphoribacter hoenirii “Accumulibacter” Phosphoribacter
Abstract
ABSTRACT Polyphosphate-accumulating organisms (PAOs) are the main bacteria responsible for phosphorus removal and recovery in full-scale wastewater treatment plants (WWTPs). They encompass members of the genera Candidatus Accumulibacter, Azonexus (formerly Dechloromonas ), and Candidatus Phosphoribacter (formerly Tetrasph
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Multigene Typing of Croatian ‘Candidatus Phytoplasma Mali’ Strains

Citation
Križanac et al. (2025). Pathogens 14 (10)
Names
Ca. Phytoplasma
Abstract
Phytoplasmas (‘Candidatus Phytoplasma’) are intracellular pleomorphic plant pathogens belonging to the class Mollicutes. They colonize both plant hosts and insect vectors in their life cycle. Apple proliferation (AP) is one of the most important phytoplasmoses present in Europe, causing significant economic losses in apple production. The causal agent, ‘Ca. P. mali’, was identified in apple and Cacopsylla picta samples using both real-time PCR and nested PCR based on the amplification of 16S rDN
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