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Gudongella oleilytica gen. nov., sp. nov., an aerotorelant bacterium isolated from Shengli oilfield and validation of family Tissierellaceae

Citation
Wu et al. (2020). International Journal of Systematic and Evolutionary Microbiology 70 (2)
Names
Tepidimicrobium
Abstract
A novel Gram-stain-positive, rod shaped and anaerobic bacterium, designated as W6T, was isolated from Shengli oilfield in China. Strain W6T was observed to grow from 20 to 45 °C with pH 6.5–9.0 (optimally at 40 °C and pH of 7.5) and without addition of NaCl. The major cellular fatty acids were iso-C15 : 0 (29.1%), C14 : 0 (27.0%) and C16 : 0 (12.2%), and the main polar lipids were lipids (L) and aminolipids (AL). The DNA G+C content is 42.9 mol%. Based on 16S rRNA gene sequence analysis, strain
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Enhancing PCR Capacity To Detect ‘Candidatus Liberibacter asiaticus’ Utilizing Whole Genome Sequence Information

Citation
Bao et al. (2020). Plant Disease 104 (2)
Names
Ca. Liberibacter asiaticus
Abstract
‘Candidatus Liberibacter asiaticus’ (CLas) is an unculturable α-proteobacterium associated with citrus Huanglongbing (HLB; yellow shoot disease). PCR procedures that accurately confirm or exclude CLas infection in citrus tissue/Asian citrus psyllid (ACP) samples are critical for HLB management. When CLas was described in 1994, a 23-bp signature oligonucleotide sequence (OI1) in the 16S rRNA gene (rrs, three genomic copies) was identified based on Sanger sequencing. OI1 contains single nucleotid
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Absicoccus porci gen. nov., sp. nov., a member of the family Erysipelotrichaceae isolated from pig faeces

Citation
Shin et al. (2020). International Journal of Systematic and Evolutionary Microbiology 70 (2)
Names
Absicoccus intestinalis
Abstract
An obligately anaerobic, Gram-stain-positive and coccus-shaped bacterium, designated strain YH-panp20T, was isolated from pig faeces. Phylogenetic analysis based on 16S rRNA gene sequencing indicated that the isolate belongs to the family Erysipelotrichaceae , and is most closely related to Catenisphaera adipataccumulans KC
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Tepidiforma bonchosmolovskayae gen. nov., sp. nov., a moderately thermophilic Chloroflexi bacterium from a Chukotka hot spring (Arctic, Russia), representing a novel class, Tepidiformia, which includes the previously uncultivated lineage OLB14

Citation
Kochetkova et al. (2020). International Journal of Systematic and Evolutionary Microbiology 70 (2)
Names
Tepidiformaceae Tepidiformales Tepidiformia
Abstract
A novel aerobic moderately thermophilic bacterium, strain 3753OT, was isolated from a Chukotka hot spring (Arctic, Russia) using the newly developed technology of laser engineering of microbial systems. Сells were regular short rods, 0.4×0.8–2.0 µm in size, with a monoderm-type envelope and a single flagellum. The temperature and pH ranges for growth were 42–60 °C and pH 6.5–8.5, the optima being 50–54 °C and pH 7.3. Strain 3753OT grew chemoorganoheterotrophically on a number of carbohydrates or
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A novel haplotype of ‘Candidatus Liberibacter solanacearum’ found in Apiaceae and Polygonaceae family plants

Citation
Haapalainen et al. (2020). European Journal of Plant Pathology 156 (2)
Names
“Liberibacter solanacearum”
Abstract
AbstractA previously unknown haplotype of the plant pathogen ‘CandidatusLiberibacter solanacearum’ (Lso) was found in cultivated carrots and parsnips in eastern Finland. That same haplotype was found in western Finland, over 300 km away, in the family Polygonaceae, the speciesFallopia convolvulus(wild buckwheat) andPersicaria lapathifolia(pale persicaria) growing as weeds within carrot and parsnip fields. The infected plants, both apiaceous and polygonaceous, showed symptoms of foliar discoloura
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What's in a name? The case of cyanobacteria

Citation
Garcia‐Pichel et al. (2020). Journal of Phycology 56 (1)
Names
Cyanobacteriota
Abstract
A redefinition of the cyanobacterial lineage has been proposed based on phylogenomic analysis of distantly related nonphototrophic lineages. We define Cyanobacteria here as “Organisms in the domain bacteria able to carry out oxygenic photosynthesis with water as an electron donor and to reduce carbon dioxide as a source of carbon, or those secondarily evolved from such organisms.”