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Oxford nanopore sequencing using metabarcoding as detection and identification tool for ‘Candidatus Phytoplasma’ and ‘Ca. Liberibacter’ taxa Everaert et al. (2025). Phytopathogenic mollicutes 15 (1) Liberibacter Ca. Phytoplasma
Alternative Hosts of ‘Candidatus Phytoplasma pruni’ Identified Through Surveys and Vector Gut Content Analysis Shires et al. (2025). Plant Health Progress 26 (2) Ca. Phytoplasma pruni
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Molecular variation of ‘Candidatus Phytoplasma ziziphi’ isolated during co-cultivation from micropropagated jujube witches’ broom infected shoots Zakurin et al. (2025). Phytopathogenic mollicutes 15 (1) Ca. Phytoplasma ziziphi
Testing for ‘Candidatus Phytoplasma phoenicium’ and peach latent mosaic viroid presence in Russia Shneyder et al. (2025). Phytopathogenic mollicutes 15 (1) Ca. Phytoplasma phoenicium
Seasonal dispersal of Cacopsylla bidens and its role in the epidemiology of ‘Candidatus Phytoplasma pyri’ in mixed-crop systems Sharon et al. (2025). Phytopathogenic mollicutes 15 (1) Ca. Phytoplasma pyri
Natronorarus salvus gen. nov., sp. nov., Halalkalicoccus ordinarius sp. nov., and Halalkalicoccus salilacus sp. nov., halophilic archaea from a soda lake and two saline lakes, and proposal to classify the genera Halalkalicoccus and Natronorarus into Halalkalicoccaceae fam. nov. in the order Halobacteriales within the class Halobacteria Mao et al. (2025). Systematic and Applied Microbiology 48 (1) Natronorarus Halalkalicoccaceae
Facivitalis istanbulensis gen. nov., sp. nov., a novel member of the family Sphingomonadaceae with the potential for aromatic-degradation isolated from Jet A1 fuel Arkan-Ozdemir et al. (2025). Antonie van Leeuwenhoek 118 (1) Facivitalis
Describing five new strains in the family Woeseiaceae and emended description of the order Woeseiales with genomic features related to environmental adaptation Lian et al. (2025). Systematic and Applied Microbiology 48 (1) Lentisalinibacter
First identification of Cacopsylla bidens as a vector of ‘Candidatus Phytoplasma pyri’, the agent associated with pear decline Tomer et al. (2025). Phytopathogenic mollicutes 15 (1) Ca. Phytoplasma pyri
Identification of ‘Candidatus Phytoplasma solani’ in sugar beet in the Voronezh region of the Russian Federation Prikhodko et al. (2025). Phytopathogenic mollicutes 15 (1) Ca. Phytoplasma solani