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cognitis nomina
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Citation
Names
Abstract
‘Candidatus Phytoplasma aurantifolia’ and ‘Candidatus Phytoplasma australasia’: Epidemiology meets quarantine
Bertaccini
(2023).
Phytopathogenic Mollicutes
13 (1)
Ca.
Phytoplasma aurantifolia
Ca.
Phytoplasma australasia
Assessment of proportion of populations of Haplaxius crudus and Oecleus mackaspringi carrying ‘Candidatus Phytoplasma palmae’ in Jamaica
Myrie et al.
(2023).
Phytopathogenic Mollicutes
13 (1)
Ca.
Phytoplasma palmae
Molecular detection of ‘Candidatus Phytoplasma mali’ associated with virescence in Narcissus tazetta in Turkey
Boztas et al.
(2023).
Phytopathogenic Mollicutes
13 (1)
Ca.
Phytoplasma mali
Description of a moderately acidotolerant and aerotolerant anaerobic bacterium Acidilutibacter cellobiosedens gen. nov., sp. nov. within the family Acidilutibacteraceae fam. nov., and proposal of Sporanaerobacteraceae fam. nov. and Tepidimicrobiaceae fam. nov
Fan et al.
(2023).
Systematic and Applied Microbiology
46 (1)
Sporanaerobacteraceae
Tepidimicrobium
‘Candidatus Phytoplasma solani’ and ‘Candidatus Arsenophonus phytopathogenicus’ in sugar beet in Germany and Switzerland
Schumann et al.
(2023).
Phytopathogenic Mollicutes
13 (1)
Ca.
Arsenophonus phytopathogenicus
Ca.
Phytoplasma solani
Detection and identification of ‘Candidatus Phytoplasma rubi’ and viruses in Rubus idaeus using total RNA
Franova et al.
(2023).
Phytopathogenic Mollicutes
13 (1)
Ca.
Phytoplasma rubi
Differentiation of ‘Candidatus Liberibacter asiaticus’ in Saudi Arabia based on tandem repeat variability in genomic locus
Widyawan et al.
(2023).
Journal of King Saud University - Science
35 (1)
“Liberibacter asiaticus”
Actinomyces ruminis sp. nov., an obligately anaerobic bacterium isolated from the rumen of cattle
Lanjekar et al.
(2023).
Archives of Microbiology
205 (1)
Identification of the symbiovar maamori in Mesorhizobium isolated from nodules of Ononis repens in the Maamora forest (Morocco)
Laadraoui et al.
(2023).
Symbiosis
89 (1)
Mesorhizobium maamorense
Phylogenomics and comparative genomic analyses support the creation of the novel family Ignatzschineriaceae fam. nov. comprising the genera Ignatzschineria and Wohlfahrtiimonas within the order Cardiobacteriales
Montecillo
(2023).
Research in Microbiology
174 (1-2)
Wohlfahrtiimonas
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