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Genetic Signatures of Contrasted Outbreak Histories of “Candidatus Liberibacter asiaticus”, the Bacterium That Causes Citrus Huanglongbing, in Three Outermost Regions of the European Union

Citation
Pruvost et al. (2024). Evolutionary Applications 17 (12)
Names
Ca. Liberibacter asiaticus Ca. Liberibacter africanus Liberibacter
Abstract
ABSTRACTIn an era of trade globalization and climate change, crop pathogens and pests are a genuine threat to food security. The detailed characterization of emerging pathogen populations is a prerequisite for managing invasive species pathways and designing sustainable disease control strategies. Huanglongbing is the disease that causes the most damage to citrus, a crop that ranks #1 worldwide in terms of fruit production. Huanglongbing can be caused by three species of the phloem‐limited alpha
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The effector PHYL1JWB from Candidatus Phytoplasma ziziphi induces abnormal floral development by destabilising flower development proteins

Citation
Xue et al. (2024). Plant, Cell & Environment 47 (12)
Names
Ca. Phytoplasma ziziphi
Abstract
AbstractPhytoplasmas can induce complex and substantial phenotypic changes in their hosts in ways that favour their colonisation, but the mechanisms underlying these changes remain largely unknown. Jujube witches' broom (JWB) disease is a typical phytoplasma disease causing great economic loss in Chinese jujube (Ziziphus jujuba Mill.). Here, we reported an effector, PHYL1JWB from Candidatus Phytoplasma ziziphi, which implicated in inducing abnormal floral organogenesis. Utilising a combination o
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Detection and Multigene Characterization of ‘Candidatus Phytoplasma ulmi’ Strains Infecting Ulmus spp. in Southern Italy

Citation
Marcone et al. (2024). Forests 15 (12)
Names
Ca. Phytoplasma ulmi
Abstract
‘Candidatus Phytoplasma ulmi’ (16SrV-A) is the causal agent of elm yellows (EY), a lethal and/or decline disease of several Ulmus (elm) species and hybrids in North America and Europe. In this study, field observations and PCR assays were used to detect phytoplasma infections in diseased U. minor, U. pumila and U. glabra trees in southern Italy. Also, a multigene sequence analysis employing various less conserved genes was carried out to explore the genetic variation in detected strains. All the
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Pangenomic insights into Dehalobacter evolution and acquisition of functional genes for bioremediation

Citation
Bulka et al. (2024). Microbial Genomics 10 (11)
Names
Dehalobacter alkaniphilus “Dehalobacter aromaticus”
Abstract
Dehalobacter is a genus of organohalide-respiring bacteria that is recognized for its fastidious growth using reductive dehalogenases (RDases). In the SC05 culture, however, a Dehalobacter population also mineralizes dichloromethane (DCM) produced by chloroform dechlorination using the mec cassette, just downstream of its active RDase. A closed genome of this DCM-mineralizing lineage has previously evaded assembly. Here, we present the genomes of two novel Dehalobacter strains
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