Publications
720
| Citation | Title | ||
|---|---|---|---|
| Phillips et al., 2026, Journal of Microbiological Methods | A qPCR method for detection of ‘Candidatus Liberibacter asiaticus’: Optimization of selected assay parameters | ||
| Ma, Liu, 2026, Biosensors and Bioelectronics | Development of a toehold switch detection platform based on a modified cell-free translation system for specific differentiation of coronavirus infectious bronchitis virus genotypes and sensitive detection of phloem-limited bacterium Candidatus Liberibacter asiaticus | ||
| Giri et al., 2026, PLOS One | PCR-based detection and phylogenetic analysis of Candidatus Liberibacter asiaticus in citrus orchards across Nepal | ||
| Patterson et al., 2026, Plant Disease | Comparative RT-qPCR and qPCR Reveal Candidatus Liberibacter asiaticus Early and Low-titer Infection, and Relative Cell Activity in Citrus and Psyllids | ||
| Boyer et al., 2026, Phytopathology Research | Spatial distribution and genetic diversity of ‘Candidatus Liberibacter asiaticus’ and ‘Ca. L. africanus’ in Mauritius | ||
| Tian et al., 2026, Journal of Agricultural and Food Chemistry | Burkholderia spp. from HLB-Escape Rhizosphere Suppress Candidatus Liberibacter asiaticus Titers and Induce Defense Responses in Citrus | ||
| Atta et al., 2026, Journal of Citrus Pathology | Update on ‘Candidatus Liberibacter asiaticus’ incidence in five districts of the Punjab province of Pakistan | ||
| Luo et al., 2026, Plant Disease | Geospatial Risk-Based Survey Model for ‘ Candidatus Liberibacter asiaticus’ Detection in Residential Citrus Populations in California | ||
| Mei et al., 2026, Molecular Plant Pathology | ‘ Candidatus Liberibacter asiaticus’ Effector <scp>SDE4250</scp> Targets Citrus Proteasome Protein <scp>RPN10</scp> to Inhibit Salicylic Acid‐Mediated Citrus Immunity | ||
| Deng et al., 2026, Molecular Plant Pathology | ‘ Candidatus Liberibacter asiaticus’ Effector <scp>SDE525</scp> hijacks <scp>NACα</scp> to Suppress Jasmonic Acid‐Mediated Immunity in Citrus |