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CitationNamesAbstract
Acquisition dynamics of ‘Candidatus Liberibacter asiaticus’ and ‘Ca. L. americanus’ by Diaphorina citri highlights the epidemiological decline of ‘Ca. L. americanus’ Darolt et al. (2026). Scientific Reports “Liberibacter asiaticus”
A unique compact genomic island co-localizing iron and anammox genes in Candidatus Brocadia sinica , but not in other species Wang et al. (2026). Ca. Brocadia sinica “Kuenenia stuttgartensis”
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Candidatus Hepatincola Dittmer et al. (2026). Bergey's Manual of Systematics of Archaea and Bacteria “Hepatincola” Ca. Hepatincola porcellionum Ca. Hepatincolaceae
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Phylogenetic analysis and propagative transmissibility of candidatus liberibacter asiaticus infecting two local citrus cultivars , citrus reticulata blanco and citrus sinensis L. Osbeck Sajid et al. (2026). Archives of Phytopathology and Plant Protection 59 (11)
Candidatus Krumholzibacteriota Elshahed et al. (2026). Bergey's Manual of Systematics of Archaea and Bacteria “Krumholzibacteriota” Ca. Krumholzibacterium “Krumholzibacterium zodletonense”
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Eximiradius proteiniborus gen. nov., sp. nov., the first cultivated representative of the “Candidatus Kapaibacteriia” (lineage OPB56) and a proposal of Eximiradiaceae fam. nov., Eximiradiales ord. nov., Eximiradiia class. nov. within the phylum Bacteroidota Podosokorskaya et al. (2026). Systematic and Applied Microbiology Kapaibacteriia
First Report of ‘ Candidatus Phytoplasma asteris’ causing Argemone mexicana Little Leaf and Virescence in India Kumar, Mall (2026). New Disease Reports 54 (1) Ca. Phytoplasma asteris
Selective Autophagy Receptor <scp>CsNBR1</scp> Confers Citrus Huanglongbing Resistance by Degrading ‘ Candidatus Liberibacter Asiaticus’ Virulence Effectors Shi et al. (2026). Molecular Plant Pathology 27 (7) Liberibacter “Liberibacter asiaticus”
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CitMYB84: A promising transcription factor for the citrus fight against Candidatus Liberibacter asiaticus Su et al. (2026). Gene 999 “Liberibacter asiaticus”
Genomic assessment of early-season sweet oranges provides insights into the mechanisms behind their enhanced tolerance to ‘Candidatus Liberibacter asiaticus’ and huanglongbing disease Ramekar et al. (2026). Physiological and Molecular Plant Pathology “Liberibacter asiaticus”