Publications
628
Citation | Title | ||
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Patterson et al., 2024, | Comparative RT-qPCR and qPCR reveals early infection, low-titer infection, and relative cell activity of the HLB bacterium,CandidatusLiberibacter asiaticus | ||
Mann et al., 2024, Phytobiomes Journal | Grove-Level Analysis of the Titer and Prevalence of ‘Candidatus Liberibacter asiaticus’ and Wolbachia in Diaphorina citri, Vector of Citrus Huanglongbing | ||
Collins et al., 2024, Plant Disease | Confirmation of Candidatus Liberibacter asiaticus in Asian Citrus Psyllids and Detection of Asian Citrus Psyllids in Commercial Citrus in Georgia (U.S.A.) | ||
Souza et al., 2024, European Journal of Plant Pathology | How scion/rootstock biometric, anatomical, and DNA methylation dynamics affect citrus-Candidatus Liberibacter asiaticus interaction | ||
Martins et al., 2024, Plant Disease | Multiplex qPCR for the detection of bacteria associated with huanglongbing 'Candidatus Liberibacter asiaticus', 'Ca. L. americanus' and 16Sr IX group phytoplasma | ||
Zheng et al., 2024, Scientific Data | Whole genome sequences of 135 “Candidatus Liberibacter asiaticus” strains from China | ||
Huang et al., 2024, PLOS Pathogens | SDE19, a SEC-dependent effector from ‘Candidatus Liberibacter asiaticus’ suppresses plant immunity and targets Citrus sinensis Sec12 to interfere with vesicle trafficking | ||
Cavichioli et al., 2024, Horticulturae | Effects of ‘Candidatus’ Liberibacter Asiaticus on the Root System of Poncirus trifoliata Hybrids as a Rootstock for ‘Valencia’ Scion | ||
A. Aksenov et al., 2024, Scientific Reports | Spatial chemistry of citrus reveals molecules bactericidal to Candidatus Liberibacter asiaticus | ||
Lovelace et al., 2024, | Transcriptomic profiling of ‘CandidatusLiberibacter asiaticus’ in different citrus tissues reveals novel insights into Huanglongbing pathogenesis |