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Seasonal Variation in Populations of ‘Candidatus Liberibacter asiaticus’ in Citrus Trees in Paraná State, Brazil

Citation
Sauer et al. (2015). Plant Disease 99 (8)
Names
Ca. Liberibacter asiaticus
Abstract
Huanglongbing (HLB) is considered one of the most destructive diseases of citrus because the plants rapidly become unproductive, enter a decline, and eventually die. HLB is caused by the phloem-limited bacterium ‘Candidatus Liberibacter’ spp. The objective of this study was to evaluate seasonal variation of the in planta population of ‘Ca. Liberibacter asiaticus’ in the foliage of citrus trees in Brazil using real-time polymerase chain reaction (qPCR). Eleven plants (naturally infected, then sc
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Haplotypes of “Candidatus Liberibacter europaeus” also separate by geography and host species

Citation
Nelson (2015).
Names
Ca. Liberibacter europaeus
Abstract
“Candidatus Liberibacter europaeus” (Leu) is one of six currently known Liberibacter species. It is known primarily from pear and related species across Europe, and from Scotch broom and its associated psyllids in New Zealand (introduced from Britain). The psyllids were introduced to New Zealand as a biocontrol agent for broom and it is thought the bacterium may have been introduced as an endosymbiont of the psyllids. No symptoms in apple or pear trees have been reported, but mild symptoms can o
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Dominant and novel clades of Candidatus Accumulibacter phosphatis in 18 globally distributed full-scale wastewater treatment plants

Citation
Mao et al. (2015). Scientific Reports 5 (1)
Names
“Accumulibacter phosphatis”
Abstract
AbstractHere we employed quantitative real-time PCR (qPCR) assays for polyphosphate kinase 1 (ppk1) and 16S rRNA genes to assess relative abundances of dominant clades of Candidatus Accumulibacter phosphatis (referred to Accumulibacter) in 18 globally distributed full-scale wastewater treatment plants (WWTPs) from six countries. Accumulibacter were not only detected in the 6 WWTPs performing biological phosphorus removal, but also inhabited in the other 11 WWTPs employing conventional activated
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Unusual biology across a group comprising more than 15% of domain Bacteria

Citation
Brown et al. (2015). Nature 523 (7559)
Names
12 Names
Abstract