Publications
681
| Citation | Title | ||
|---|---|---|---|
| Cui et al., 2022, International Journal of Molecular Sciences | Integrated Transcriptome and Metabolome Analysis Reveals Phenylpropanoid Biosynthesis and Phytohormone Signaling Contribute to “Candidatus Liberibacter asiaticus” Accumulation in Citrus Fruit Piths (Fluffy Albedo) | ||
| Li et al., 2022, Pest Management Science | Potential of citrus endophyte Bacillus subtilis<scp>L1</scp>‐21 in the control of Candidatus Liberibacter asiaticus in Asian citrus psyllid, Diaphorina citri | ||
| Rattner et al., 2022, Plant Disease | An Improved Recombinase Polymerase Amplification Coupled with Lateral Flow Assay for Rapid Field Detection of ‘Candidatus Liberibacter asiaticus’ | ||
| Tseng et al., 2022, Plant Disease | First Report of ‘Candidatus Phytoplasma asteris’ (16SrI group) Associated with Murraya exotica Witches’-Broom Disease in Taiwan | ||
| Cai et al., 2022, BMC Research Notes | A synthetic ‘essentialome’ for axenic culturing of ‘Candidatus Liberibacter asiaticus’ | ||
| Konda et al., 2022, Annals of Phytomedicine: An International Journal | Antimicrobial volatile compounds of healthy mandarin orange imparting resistance to Candidatus Liberibacter asiaticus | ||
| Gupta et al., 2022, Journal of Biomolecular Structure and Dynamics | In-silico screening and identification of potential inhibitors against 2Cys peroxiredoxin ofCandidatusLiberibacter asiaticus | ||
| Hu et al., 2022, Frontiers in Plant Science | Citrus Huanglongbing correlated with incidence of Diaphorina citri carrying Candidatus Liberibacter asiaticus and citrus phyllosphere microbiome | ||
| Yang, Ancona, 2022, Agronomy | Validation of Propidium Monoazide-qPCR for Assessing Treatment Effectiveness against ‘Candidatus Liberibacter asiaticus’ in Citrus | ||
| Higgins et al., 2022, Phytopathology® | Strain Tracking of ‘Candidatus Liberibacter asiaticus’, the Citrus Greening Pathogen, by High-Resolution Microbiome Analysis of Asian Citrus Psyllids |