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cognitis nomina
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Citation
Names
Abstract
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
Biological and molecular features of ‘Candidatus Phytoplasma prunorum’ associated with a severe outbreak in apricot
Gagliardi et al.
(2025).
Phytopathogenic mollicutes
15 (1)
Ca.
Phytoplasma prunorum
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
Engineering the mangrove soil microbiome for selection of polyethylene terephthalate-transforming bacterial consortia
Jiménez et al.
(2025).
Trends in Biotechnology
43 (1)
Mangrovimarina plasticivorans
Ts
Mangrovimarina
Kaistia cartagenensis
Identification of ‘Candidatus Phytoplasma trifolii’ associated with mango phyllody in Kerala, India
Abdulmajeed et al.
(2025).
Phytopathogenic mollicutes
15 (1)
Ca.
Phytoplasma trifolii
Paralabilibaculum antarcticum gen. nov., sp. nov., an anaerobic marine bacterium of the family Marinifilaceae isolated from Antarctica sea ice
Zhuang et al.
(2025).
Antonie van Leeuwenhoek
118 (1)
Paralabilibaculum
Elusive marine Verrucomicrobiota: Seasonally abundant members of the novel genera Seribacter and Chordibacter specialize in degrading sulfated glycans
Wilkie, Orellana
(2025).
Systematic and Applied Microbiology
48 (1)
Chordibacter forsetii
Ts
Seribacteraceae
Seribacter sulfatis
Ts
Seribacter
Chordibacter
Testing for ‘Candidatus Phytoplasma phoenicium’ and peach latent mosaic viroid presence in Russia
Shneyder et al.
(2025).
Phytopathogenic mollicutes
15 (1)
Ca.
Phytoplasma phoenicium
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
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
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