Publications
203
| Citation | Title | ||
|---|---|---|---|
| Ammar et al., 2015, Journal of Economic Entomology | Effect of Cyantraniliprole, a Novel Insecticide, on the Inoculation of Candidatus Liberibacter Asiaticus Associated with Citrus Huanglongbing by the Asian Citrus Psyllid (Hemiptera: Liviidae) | ||
| Mas et al., 2014, Journal of Chemical Ecology | Influence of the Pathogen Candidatus Liberibacter Solanacearum on Tomato Host Plant Volatiles and Psyllid Vector Settlement | ||
| Deng et al., 2014, Current Microbiology | Characterization of “Candidatus Liberibacter Asiaticus” Populations by Double-Locus Analyses | ||
| Pelz-Stelinski, Stelinski, 2014, Manual of Security Sensitive Microbes and Toxins | Candidatus Liberibacter | ||
| Cook et al., 2014, African Entomology | Population Dynamics and Seasonal Fluctuation in the Percentage Infection ofTrioza erytreaewith ‘Candidatus’ Liberibacter Africanus, the African Citrus Greening Pathogen, in an Orchard Severely Infected with African Greening and Transmission by Field-CollectedTrioza erytreae | ||
| Shen et al., 2013, European Journal of Plant Pathology | Relation between plant nutrition, hormones, insecticide applications, bacterial endophytes, and Candidatus Liberibacter Ct values in citrus trees infected with Huanglongbing | ||
| Bhaskara et al., 2013, Journal of Plant Diseases and Protection | Evaluation of efficiency of hemi-nested PCR assay for the detection of ‘Candidatus Liberibacter’ infecting citrus | ||
| Ilardi, 2013, Biosafety | ‘Candidatus Liberibacter’ spp.: Emerging Threats for Agriculture in the European and Mediterranean Region | ||
| Slisz et al., 2012, Journal of Proteome Research | Metabolomic Analysis of Citrus Infection by ‘Candidatus Liberibacter’ Reveals Insight into Pathogenicity | ||
| Casteel et al., 2012, PLoS ONE | Correction: Manipulation of Plant Defense Responses by the Tomato Psyllid (Bactericerca cockerelli) and Its Associated Endosymbiont Candidatus Liberibacter Psyllaurous |