Publications
727
| Citation | Title | ||
|---|---|---|---|
| Yao et al., 2023, PLOS ONE | On-site detection system of Candidatus Liberibacter asiaticus by using TaqMan probe-based insulated isothermal polymerase chain reaction (iiPCR) | ||
| Karuppaiya et al., 2023, Current and Emerging Challenges in the Diseases of Trees | Devious Phloem Intruder Candidatus Liberibacter Species Causing Huanglongbing: History, Symptoms, Mechanism, and Current Strategies | ||
| Zheng et al., 2023, Microbiology Spectrum | Pathogenicity and Transcriptomic Analyses of Two “ Candidatus Liberibacter asiaticus” Strains Harboring Different Types of Phages | ||
| Gao et al., 2023, Frontiers in Plant Science | Comparative transcriptome profiling of susceptible and tolerant citrus species at early and late stage of infection by “Candidatus Liberibacter asiaticus” | ||
| Dominguez et al., 2023, Microorganisms | Endophytes and Plant Extracts as Potential Antimicrobial Agents against Candidatus Liberibacter Asiaticus, Causal Agent of Huanglongbing | ||
| Pandey et al., 2023, Phytopathology® | Microscopic and Transcriptomic Analyses of Early Events Triggered by ‘Candidatus Liberibacter asiaticus’ in Young Flushes of Huanglongbing-Positive Citrus Trees | ||
| Osman et al., 2023, PhytoFrontiers™ | Update and Validation of the 16S rDNA qPCR Assay for the Detection of Three ‘Candidatus Liberibacter Species’ Following Current MIQE Guidelines and Workflow | ||
| Patandjengi et al., 2023, IOP Conference Series: Earth and Environmental Science | Detection of citrus vein phloem degeneration disease (Candidatus Liberibacter asiaticum) in orange cv. Selayar, Citrus reticulata L | ||
| Wu et al., 2023, Plant Disease | Physiological Variables Influenced by ‘Candidatus Liberibacter asiaticus’ Infection in Two Citrus Species | ||
| Nian et al., 2023, International Journal of Molecular Sciences | Spatial Distribution and Temporal Dynamics of Candidatus Liberibacter Asiaticus in Different Stages of Embryos, Nymphs and Adults of Diaphorina citri |