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Crystal structure of Candidatus Methanoperedens nitroreducens Dph2 with 4Fe-4S cluster and SAM Fenwick et al. (2018). Ca. Methanoperedens nitroreducens
Crystal structure of Candidatus Methanoperedens nitroreducens Dph2 with 4Fe-4S cluster and SAM/cleaved SAM Fenwick et al. (2018). Ca. Methanoperedens nitroreducens
Distributions and Abundances of Sublineages of the N2-Fixing Cyanobacterium Candidatus Atelocyanobacterium thalassa (UCYN-A) in the New Caledonian Coral Lagoon Henke et al. (2018). Frontiers in Microbiology 9 Ca. Atelocyanobacterium thalassa
Global gene regulation in tomato plant (Solanum lycopersicum) responding to vector (Bactericera cockerelli) feeding and pathogen (‘Candidatus Liberibacter solanacearum’) infection Huot et al. (2018). Plant Molecular Biology 97 (1-2) “Liberibacter solanacearum”
Metabolite Profiling of Candidatus Liberibacter Infection in Hamlin Sweet Oranges Hung, Wang (2018). Journal of Agricultural and Food Chemistry 66 (15) Liberibacter
Host-Polarized Cell Growth in Animal Symbionts Pende et al. (2018). Current Biology 28 (7) “Thiosymbium robbeae”
The crystal structure of the malic enzyme fromCandidatusPhytoplasma reveals the minimal structural determinants for a malic enzyme Alvarez et al. (2018). Acta Crystallographica Section D Structural Biology 74 (4) Ca. Phytoplasma
Citrus phytohormonal response to Candidatus Liberibacter asiaticus and its vector Diaphorina citri Nehela et al. (2018). Physiological and Molecular Plant Pathology 102 Ca. Liberibacter asiaticus
Diaphorina citri Nymphs Are Resistant to Morphological Changes Induced by “Candidatus Liberibacter asiaticus” in Midgut Epithelial Cells Mann et al. (2018). Infection and Immunity 86 (4) Ca. Liberibacter asiaticus
Homologous Recombination and Transposon Propagation Shape the Population Structure of an Organism from the Deep Subsurface with Minimal Metabolism Probst, Banfield (2018). Genome Biology and Evolution 10 (4) “Forterrea” “Forterrea multitransposorum”