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Candidatus Liberibacter africanus Jagoueix, Bové & Garnier. [Distribution map]

Citation
Cabi, Eppo (2022). Distribution Maps of Plant Diseases
Names
Ca. Liberibacter africanus
Abstract
Abstract A new distribution map is provided for Candidatus Liberibacter africanus Jagoueix, Bové & Garnier. Alphaproteobacteria: Rhizobiales: Phyllobacteriaceae. Hosts: Citrus spp.

Population structure of an Antarctic aquatic cyanobacterium

Citation
Panwar et al. (2022). Microbiome 10 (1)
Names
Regnicoccus frigidus Ca. Chlorobium antarcticum Regnicoccus
Abstract
AbstractBackgroundAce Lake is a marine-derived, stratified lake in the Vestfold Hills of East Antarctica with an upper oxic and lower anoxic zone. Cyanobacteria are known to reside throughout the water column. ASynechococcus-like species becomes the most abundant member in the upper sunlit waters during summer while persisting annually even in the absence of sunlight and at depth in the anoxic zone. Here, we analysed ~ 300 Gb of Ace Lake metagenome data including 59Synechococcus-like metagenome-
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Phylogenetic relationship between the endosymbiont “Candidatus Riesia pediculicola” and its human louse host

Citation
Hammoud et al. (2022). Parasites & Vectors 15 (1)
Names
Ca. Riesia pediculicola
Abstract
Abstract Background The human louse (Pediculus humanus) is a haematophagous ectoparasite that is intimately related to its host. It has been of great public health concern throughout human history. This louse has been classified into six divergent mitochondrial clades (A, D, B, F, C and E). As with all haematophagous lice, P. humanus directly depends on the presence of a bacterial symbiont, known as “Candidatus Riesia pediculicola”, to complement their unbalanced
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Potential of citrus endophyte Bacillus subtilis<scp>L1</scp>‐21 in the control of Candidatus Liberibacter asiaticus in Asian citrus psyllid, Diaphorina citri

Citation
Li et al. (2022). Pest Management Science 78 (12)
Names
Ca. Liberibacter asiaticus
Abstract
AbstractBACKGROUNDAsian citrus psyllid (ACP), also known as Diaphorina citri, is the natural vector of Candidatus Liberibacter asiaticus (CLas), which is responsible for Huanglongbing (HLB), a devastating citrus disease. Previously, the pathogen was successfully excluded from diseased citrus plants by using the indigenous endophyte Bacillus subtilis L1‐21. However, the pathogen elimination and colonization potential of B. subtilis L1‐21 in the carrier vector ACP, as well as the recruitment of na
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A synthetic ‘essentialome’ for axenic culturing of ‘Candidatus Liberibacter asiaticus’

Citation
Cai et al. (2022). BMC Research Notes 15 (1)
Names
Liberibacter Ca. Liberibacter asiaticus
Abstract
Abstract Objective ‘Candidatus Liberibacter asiaticus’ (CLas) is associated with the devastating citrus ‘greening’ disease. All attempts to achieve axenic growth and complete Koch’s postulates with CLas have failed to date, at best yielding complex cocultures with very low CLas titers detectable only by PCR. Reductive genome evolution has rendered all pathogenic ‘Ca. Liberibacter’ spp. deficient in multiple key biosynthetic, metabolic and structural pathways that
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