Molecular detection of “Candidatus Rickettsia tarasevichiae” by Loop-mediated Isothermal Amplification (LAMP) of the ompA gene |
Xue et al. (2022). Journal of Microbiological Methods 202
|
Ca. Rickettsia tarasevichiae
|
|
|
Method for culturing Candidatus Ornithobacterium hominis |
Lawrence et al. (2019). Journal of Microbiological Methods 159
|
Ca. Ornithobacterium hominis
|
|
|
A novel method for separation of Rickettsiales-like organism “Candidatus Xenohaliotis californiensis” from host abalone tissue |
Cruz-Flores et al. (2015). Journal of Microbiological Methods 115
|
Ca. Xenohaliotis californiensis
|
|
|
Nested-quantitative PCR approach with improved sensitivity for the detection of low titer levels of Candidatus Liberibacter asiaticus in the Asian citrus psyllid, Diaphorina citri Kuwayama |
Coy et al. (2014). Journal of Microbiological Methods 102
|
Ca. Liberibacter asiaticus
|
|
|
Development and evaluation of a TaqMan duplex real-time PCR quantification method for reliable enumeration of Candidatus Microthrix |
Vanysacker et al. (2014). Journal of Microbiological Methods 97
|
“Neomicrothrix”
|
|
|
A new diagnostic system for ultra-sensitive and specific detection and quantification of Candidatus Liberibacter asiaticus, the bacterium associated with citrus Huanglongbing |
Lin et al. (2010). Journal of Microbiological Methods 81 (1)
|
Ca. Liberibacter asiaticus
|
|
|
Multiplex real-time PCR for detection, identification and quantification of ‘Candidatus Liberibacter solanacearum’ in potato plants with zebra chip |
Li et al. (2009). Journal of Microbiological Methods 78 (1)
|
“Liberibacter solanacearum”
|
|
|
Quantitative real-time PCR for detection and identification of Candidatus Liberibacter species associated with citrus huanglongbing |
Li et al. (2006). Journal of Microbiological Methods 66 (1)
|
Liberibacter
|
|
|