Publications (19)
Citation | Title | ||
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de Chaves et al., 2023, Scientific Reports | A new and accurate qPCR protocol to detect plant pathogenic bacteria of the genus ‘Candidatus Liberibacter’ in plants and insects | ||
Karuppaiya et al., 2022, Current and Emerging Challenges in the Diseases of Trees [Working Title] | Devious Phloem Intruder <i>Candidatus</i> Liberibacter Species Causing Huanglongbing: History, Symptoms, Mechanism, and Current Strategies | ||
Merfa e Silva et al., 2022, Phytopathology® | Probing the Application of OmpA-Derived Peptides to Disrupt the Acquisition of ‘Candidatus Liberibacter asiaticus’ by Diaphorina citri | ||
Gasparoto et al., 2022, Phytopathology® | Prevalent Transmission of ‘Candidatus Liberibacter asiaticus’ over ‘Ca. Liberibacter americanus’ in a Long-Term Controlled Environment | ||
, 2021, EPPO Bulletin | PM 7/121 (2) ‘ Candidatus Liberibacter africanus’, ‘ Candidatus Liberibacter americanus’ and ‘ Candidatus Liberibacter asiaticus’ | ||
, 2014, EPPO Bulletin | PM 7/121 (1)‘CandidatusLiberibacter africanus’,‘CandidatusLiberibacter americanus’ and‘CandidatusLiberibacter asiaticus’ | ||
Ángel et al., 2014, Agronomía Colombiana | Citrus huanglongbing: validation of Real-Time PCR (qPCR) for the detection of Candidatus Liberibacter asiaticus and Candidatus Liberibacter americanus in Colombia | ||
Lin et al., 2013, Genome Announcements | Draft Genome Sequence of “ Candidatus Liberibacter americanus” Bacterium Associated with Citrus Huanglongbing in Brazil | ||
Mafra et al., 2013, BMC Genomics | CandidatusLiberibacter americanus induces significant reprogramming of the transcriptome of the susceptible citrus genotype | ||
Gasparoto et al., 2012, Plant Pathology | Influence of temperature on infection and establishment of ‘Candidatus Liberibacter americanus’ and ‘Candidatus Liberibacter asiaticus’ in citrus plants |