Publications
727
| Citation | Title | ||
|---|---|---|---|
| Zheng et al., 2023, BMC Genomic Data | Genome sequence resource for “Candidatus Liberibacter asiaticus” strain GDCZ from a historical HLB endemic region in China | ||
| Li et al., 2023, | Adipokinetic hormone signaling mediates the enhanced fecundity ofDiaphorina citriinfected by ‘CandidatusLiberibacter asiaticus’ | ||
| Nehela, Killiny, 2023, Plants | Gamma-Aminobutyric Acid Supplementation Boosts the Phytohormonal Profile in ‘Candidatus Liberibacter asiaticus’-Infected Citrus | ||
| de Gracia Coquerel et al., 2023, Crop Protection | Preliminary assessment of bacterial antibiotic resistance and Candidatus Liberibacter asiaticus titer in three Florida commercial citrus groves | ||
| Hajeri et al., 2023, Plants | Alternative Tissue Sampling for Improved Detection of Candidatus Liberibacter asiaticus | ||
| Ebert et al., 2023, Insects | Seasonal Patterns in the Frequency of Candidatus Liberibacter Asiaticus in Populations of Diaphorina citri (Hemiptera: Psyllidae) in Florida | ||
| Xu et al., 2023, Horticulture Research | An endolysin gene fromCandidatusLiberibacter asiaticus confers dual resistance to huanglongbing and citrus canker | ||
| Shi et al., 2023, Autophagy | ‘Candidatus Liberibacter asiaticus’ secretory protein SDE3 inhibits host autophagy to promote Huanglongbing disease in citrus | ||
| Pulici et al., 2023, PhytoFrontiers™ | Rapid Movement of ‘Candidatus Liberibacter asiaticus’ on ‘Hamlin’ Sweet Orange and ‘Swingle’ Citrumelo Trunks | ||
| Lonare et al., 2023, Journal of Structural Biology | Identification and evaluation of potential inhibitor molecules against TcyA from Candidatus Liberibacter asiaticus |