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Evaluation of Candidatus Liberibacter Asiaticus Efflux Pump Inhibition by Antimicrobial Peptides

Citation
Wang et al. (2022). Molecules 27 (24)
Names
Liberibacter
Abstract
Citrus greening, also known as Huanglongbing (HLB), is caused by the unculturable bacterium Candidatus Liberibacter spp. (e.g., CLas), and has caused a devastating decline in citrus production in many areas of the world. As of yet, there are no definitive treatments for controlling the disease. Antimicrobial peptides (AMPs) that have the potential to block secretion-dependent effector proteins at the outer-membrane domains were screened in silico. Predictions of drug-receptor interactions were b
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Metaproteomics reveals methyltransferases implicated in dichloromethane and glycine betaine fermentation by ‘Candidatus Formimonas warabiya’ strain DCMF

Citation
Holland et al. (2022). Frontiers in Microbiology 13
Names
Ca. Formimonas warabiya
Abstract
Dichloromethane (DCM; CH2Cl2) is a widespread pollutant with anthropogenic and natural sources. Anaerobic DCM-dechlorinating bacteria use the Wood–Ljungdahl pathway, yet dechlorination reaction mechanisms remain unclear and the enzyme(s) responsible for carbon-chlorine bond cleavage have not been definitively identified. Of the three bacterial taxa known to carry out anaerobic dechlorination of DCM, ‘Candidatus Formimonas warabiya’ strain DCMF is the only organism that can also ferment non-chlor
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New globally distributed bacterial phyla within the FCB superphylum

Citation
Gong et al. (2022). Nature Communications 13 (1)
Names
24 Names
Abstract
AbstractMicrobes in marine sediments play crucial roles in global carbon and nutrient cycling. However, our understanding of microbial diversity and physiology on the ocean floor is limited. Here, we use phylogenomic analyses of thousands of metagenome-assembled genomes (MAGs) from coastal and deep-sea sediments to identify 55 MAGs that are phylogenetically distinct from previously described bacterial phyla. We propose that these MAGs belong to 4 novel bacterial phyla (Blakebacterota, Orphanbact
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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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The ‘Candidatus Phytoplasma tritici’ effector <scp>SWP12</scp> degrades the transcription factor <scp>TaWRKY74</scp> to suppress wheat resistance

Citation
Bai et al. (2022). The Plant Journal 112 (6)
Names
Ca. Phytoplasma tritici
Abstract
SUMMARY‘Candidatus Phytoplasma tritici’ (‘Ca. P. tritici’) is an insect‐borne obligate pathogen that infects wheat (Triticum aestivum) causing wheat blue dwarf disease, and leads to yield losses. SWP12 is a potential effector secreted by ‘Ca. P. tritici’ that manipulates host processes to create an environment conducive to phytoplasma colonization, but the detailed mechanism of action remains to be investigated. In this study, the expression of SWP12 weakened the basal immunity of Nicotiana bent
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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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