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Growth Dynamics and Survival of Liberibacter crescens BT-1, an Important Model Organism for the Citrus Huanglongbing Pathogen “ Candidatus Liberibacter asiaticus” Sena-Vélez et al. (2019). Applied and Environmental Microbiology 85 (21) Ca. Liberibacter asiaticus
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Molecular docking and dynamic approach to virtual screen inhibitors against Esbp of Candidatus Liberibacter asiaticus Saini et al. (2019). Journal of Molecular Graphics and Modelling 92 Ca. Liberibacter asiaticus
First Report on ‘Candidatus Phytoplasma asteris’ (16SrI-B subgroup) Strain Associated with Pineapple Shoot Proliferation and Witches’ Broom Symptoms in Tripura, India Mitra et al. (2019). Plant Disease 103 (11) Ca. Phytoplasma asteris
Epidemiological and molecular study on ‘Candidatus Phytoplasma prunorum’ in Austria and Hungary Riedle‐Bauer et al. (2019). Annals of Applied Biology 175 (3) Ca. Phytoplasma prunorum
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Peganum harmala is a new plant host of ‘Candidatus Phytoplasma aurantifolia’ Hemmati, Nikooei (2019). Journal of Plant Pathology 101 (4) Ca. Phytoplasma aurantifolia
International Committee on Systematics of Prokaryotes (ICSP) Subcommittee on the taxonomy of Chlamydiae. Minutes of the closed meeting, 20 March 2019, Seattle, WA, USA Borel et al. (2019). International Journal of Systematic and Evolutionary Microbiology 69 (11) Parachlamydiales
Austroagallia sinuata transmission of “Candidatus Phytoplasma aurantifolia” to Zinnia elegans Hemmati, Nikooei (2019). Journal of Plant Pathology 101 (4) Ca. Phytoplasma aurantifolia
Candidatus Phytoplasma mali’ Genome Encodes a Protein that Functions as an E3 Ubiquitin Ligase and Could Inhibit Plant Basal Defense Strohmayer et al. (2019). Molecular Plant-Microbe Interactions® 32 (11) Ca. Phytoplasma mali
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Molecular detection and genetic characterization of the potentially pathogenic Coxiella burnetii and the endosymbiotic Candidatus Midichloria mitochondrii in ticks infesting camels (Camelus dromedarius) from Tunisia Selmi et al. (2019). Microbial Pathogenesis 136 Ca. Midichloria mitochondrii
Evolution in action: habitat transition from sediment to the pelagial leads to genome streamlining in Methylophilaceae Salcher et al. (2019). The ISME Journal 13 (11) Methylopumilus Methylopumilus planktonicus Ts “Methylopumilus profundus” “Methylopumilus hibernalis” Methylopumilus universalis Methylopumilus rimovensis Methylosemipumilus turicensis Ts Methylosemipumilus Methylophilus medardensis
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