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Molecular evidence of Rickettsia raoultii, “Candidatus Rickettsia barbariae” and a novel Babesia genotype in marbled polecats (Vormela peregusna) at the China-Kazakhstan border Liu et al. (2018). Parasites & Vectors 11 (1) Ca. Rickettsia barbariae
Genomic profiling of four cultivated Candidatus Nitrotoga spp. predicts broad metabolic potential and environmental distribution Boddicker, Mosier (2018). The ISME Journal 12 (12) Ca. Nitrotoga
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First Report of ‘Candidatus Phytoplasma fragariae’ Infection of Corylus avellana (Hazelnut) in Slovenia Mehle et al. (2018). Plant Disease 102 (12) Ca. Phytoplasma fragariae
Comparative genomics reveals phylogenetic distribution patterns of secondary metabolites in Amycolatopsis species Adamek et al. (2018). BMC Genomics 19 (1) Amycolatopsis
A Secreted ‘Candidatus Liberibacter asiaticus’ Peroxiredoxin Simultaneously Suppresses Both Localized and Systemic Innate Immune Responses In Planta Jain et al. (2018). Molecular Plant-Microbe Interactions® 31 (12) Ca. Liberibacter asiaticus
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<scp>PM</scp> 3/84 (1) Inspection of places of production for ‘Candidatus Phytoplasma pyri’ Anonymous (2018). EPPO Bulletin 48 (3) Ca. Phytoplasma pyri
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Novel Geobacter species and diverse methanogens contribute to enhanced methane production in media-added methanogenic reactors Mei et al. (2018). Water Research 147 “Geobacter eutrophicus”
The extracellular association of the bacterium “CandidatusDeianiraea vastatrix” with the ciliateParameciumsuggests an alternative scenario for the evolution ofRickettsiales Castelli et al. (2018). “Deianiraea vastatrix”
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Antimicrobial Compounds Effective against Candidatus Liberibacter asiaticus Discovered via Graft-based Assay in Citrus Yang et al. (2018). Scientific Reports 8 (1) Ca. Liberibacter asiaticus
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Draft Genome Sequence of “ Candidatus Bathyarchaeota” Archaeon BE326-BA-RLH, an Uncultured Denitrifier and Putative Anaerobic Methanotroph from South Africa’s Deep Continental Biosphere Harris et al. (2018). Microbiology Resource Announcements 7 (20) “Bathyarchaeota”
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