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Sweet Secrets: Exploring Novel Glycans and Glycoconjugates in the Extracellular Polymeric Substances of “Candidatus Accumulibacter” Páez-Watson et al. (2024). ACS ES&T Water 4 (8) “Accumulibacter”
Predicción de epítopos en la proteína DR-7 que codifica un fragmento del gen Omp de Candidatus Liberibacter asiaticus Quibrera et al. (2024). Brazilian Journal of Animal and Environmental Research 7 (3) “Liberibacter asiaticus”
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Nitrogen fixation in the widely distributed marine γ-proteobacterial diazotroph Candidatus Thalassolituus haligoni Rose et al. (2024). Science Advances 10 (31) Ca. Thalassolituus haligoni
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Longitudinal Transcriptomic, Proteomic, and Metabolomic Response of Citrus sinensis to Diaphorina citri Inoculation of Candidatus Liberibacter asiaticus Lombardi et al. (2024). Journal of Proteome Research 23 (8) “Liberibacter asiaticus”
‘Candidatus Liberibacter brunswickensis’ colonization has no effect to the early development of Solanum melongena Morris et al. (2024). Scientific Reports 14 (1) “Liberibacter asiaticus” “Liberibacter brunswickensis” “Liberibacter solanacearum”
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The ‘Candidatus phytoplasma ziziphi’ effectors SJP1 and SJP2 destabilise the bifunctional regulator ZjTCP7 to modulate floral transition and shoot branching Ma et al. (2024). Plant, Cell & Environment 47 (8) Ca. Phytoplasma ziziphi
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Genomic and phenotypic characterization of Thermosynechococcus-like strains reveals eight species within the genus Thermosynechococcus and a novel genus Parathermosynechococcus gen. nov Tang et al. (2024). Molecular Phylogenetics and Evolution 197 Parathermosynechococcus Parathermosynechococcus lividus T
Clathrin heavy chain is involved in infection of Candidatus Liberibacter asiaticus in the host vector Diaphorina citri Xie et al. (2024). Insect Science 31 (4) “Liberibacter asiaticus”
Population genomics uncovers global distribution, antimicrobial resistance, and virulence genes of the opportunistic pathogen Klebsiella aerogenes Feng et al. (2024). Cell Reports 43 (8) “Klebsiella quasiaerogenes” “Klebsiella paraerogenes”
Effector enrichment by <scp>Candidatus</scp> Liberibacter promotes <scp>Diaphorina citri</scp> feeding <scp>via</scp> Jasmonic acid pathway suppression Liu et al. (2024). Pest Management Science 80 (8) Liberibacter “Liberibacter asiaticus”
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