Physiology


Publications
83

CitationNamesAbstract
The ‘Candidatus phytoplasma ziziphi’ effectors SJP1 and SJP2 destabilise the bifunctional regulator ZjTCP7 to modulate floral transition and shoot branching Ma et al. (2024). Plant, Cell & Environment Ca. Phytoplasma ziziphi
Integrated bacterial transcriptome and host metabolome analysis reveals insights into “ Candidatus Liberibacter asiaticus” population dynamics in the fruit pith of three citrus cultivars with different tolerance Li et al. (2024). Microbiology Spectrum 12 (4) Ca. Liberibacter asiaticus
Refinement of the “ Candidatus Accumulibacter” genus based on metagenomic analysis of biological nutrient removal (BNR) pilot-scale plants operated with reduced aeration Stewart et al. (2024). mSystems 9 (3) “Accumulibacter”
Molecular detection of ‘Candidatus phytoplasma aurantifolia’ associated with virescence and phyllody of Zinnia peruviana: A new record for India Mahadevakumar et al. (2024). Journal of Phytopathology 172 (2)
The ‘Candidatus Phytoplasma ziziphi’ effectors SJP1/2 negatively control leaf size by stabilizing the transcription factor ZjTCP2 in jujube Ma et al. (2024). Journal of Experimental Botany Ca. Phytoplasma ziziphi
Candidatus Methanosphaera massiliense sp. nov., a methanogenic archaeal species found in a human fecal sample and prevalent in pigs and red kangaroos Pilliol et al. (2024). Microbiology Spectrum 12 (2) Ca. Methanosphaera massiliense
Molecular characterization of ‘Candidatus Phytoplasma phoenicium’ infecting almond (Prunus dulcis) and evaluation of biochemical defenses produced in the plants Akkurak et al. (2024). Journal of Phytopathology 172 (1) Ca. Phytoplasma phoenicium
A comprehensive overview of the Chloroflexota community in wastewater treatment plants worldwide Petriglieri et al. (2023). mSystems 8 (6) “Kouleothrix” “Epilinea brevis” “Epilinea” “Leptofilum” “Epilineaceae” “Epilineales” “Avedoeria danica” “Avedoeria” “Brachythrix odensensis” “Brachythrix” “Defluviilinea gracilis” “Defluviilinea” “Defluviilinea proxima” “Villigracilis vicinus” “Villigracilis adiacens” “Villigracilis propinquus” “Villigracilis” “Villigracilis affinis” “Villigracilis proximus” “Villigracilis saccharophilus” “Villigracilaceae” “Hadersleviella danica” “Hadersleviella” “Trichofilum aggregatum” “Trichofilum” “Promineifilum glycogenicum” “Leptofilum gracile” “Leptofilum proximum” “Leptovillus gracilis” “Leptovillus affinis” “Leptovillus” “Flexicrinis affinis” “Flexicrinis proximus” “Flexicrinis” “Flexifilum breve” “Flexifilum affine” “Flexifilum” “Flexifilaceae” “Amarolinea dominans” “Fredericiella danica” “Fredericiella” “Caldilinea saccharophila” “Ribeiella danica” “Ribeiella” “Kouleothrix ribensis” “Amarobacter glycogenicus” “Amarobacter” “Amarobacillus elongatus” “Amarobacillus”
Indications for a genetic basis for big bacteria and description of the giant cable bacterium Candidatus Electrothrix gigas sp. nov Geelhoed et al. (2023). Microbiology Spectrum 11 (5) Electrothrix gigas Electronema Electrothrix Electrothrix communis Ts Electrothrix arhusiensis
The plant pathogenic bacterium Candidatus Liberibacter solanacearum induces calcium-regulated autophagy in midgut cells of its insect vector Bactericera trigonica Sarkar et al. (2023). Microbiology Spectrum 11 (5) “Liberibacter solanacearum”