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Molecular Typing of “Candidatus Bartonella ancashi,” a New Human Pathogen Causing Verruga Peruana

Citation
Mullins et al. (2013). Journal of Clinical Microbiology 51 (11)
Names
Ca. Bartonella ancashi
Abstract
ABSTRACT A recently described clinical isolate, “ Candidatus Bartonella ancashi,” was obtained from a blood sample of a patient presenting with verruga peruana in the Ancash region of Peru. This sample and a second isolate obtained 60 days later from the same patient were molecularly typed using multilocus sequence typing (MLST) and multispacer sequence typing (MST). The isolates were 100% indistinguishable from each other but phylogenetically dista
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Reaction of sweet orange cultivars expressing the attacin A gene to 'Candidatus Liberibacter asiaticus' infection

Citation
Felipe et al. (2013). Pesquisa Agropecuária Brasileira 48 (11)
Names
Ca. Liberibacter asiaticus
Abstract
The objective of this work was to evaluate the reaction of four sweet orange cultivars expressing the attacin A gene to 'Candidatus Liberibacter asiaticus' (Las) infection, a bacterium associated to huanglongbing (HLB) disease. Transgenic sweet orange plants of Hamlin, Natal, Pêra, and Valência cultivars, as well as nontransgenic controls received inocula by grafting budwood sections of HLB-infected branches. Disease progression was evaluated through observations of leaf symptoms and by polymera
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Assessment of Survival and Body Size Variation of Culicoides imicola (Diptera: Ceratopogonidae) as Functions of “Candidatus Cardinium” (Bacteroidetes) Infection Status

Citation
Morag et al. (2013). Applied and Environmental Microbiology 79 (20)
Names
Ca. Cardinium
Abstract
ABSTRACT “ Candidatus Cardinium hertigii” ( Bacteroidetes ) is a maternally inherited endosymbiont known from several arthropods. Its mechanisms for persistence in host populations are mostly reproductive manipulation, though it has been occasionally reported to improve fitness parameters in several hosts. In Culicoides (Diptera: Ceratopogonidae) biting midges, the prevalence of “ Candidatu
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Hassallia littoralis sp. nov. (Cyanobacteria, Microchaetaceae) from Mexico’s marine supralittoral based on morphological and molecular evidence

Citation
González-Resendiz et al. (2013). Phytotaxa 137 (1)
Names
Hassallia littoralis
Abstract
A new species of Hassallia (Cyanobacteria, Nostocales, Microchaetaceae) from a supralittoral tropical marine biotope is described. Hassallia littoralis is a false-branched nostocalean cyanobacterium with caespitose free filaments or with fasciculated individual filaments not in a common sheath. Filaments are mainly heteropolar, bearing mono- and bi-pored heterocysts and isopolar or heteropolar hormogonia. The sheath is often widening, with pronounced rounded terminals. This new species is define
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Abstract

Citation
Anonymous (2013).
Names
Abstract

First Report of ‘Candidatus Phytoplasma mali,’ the Causal Agent of Apple Proliferation Disease, in Apple Trees in Finland

Citation
Lemmetty et al. (2013). Plant Disease 97 (10)
Names
Ca. Phytoplasma mali
Abstract
Based on an earlier survey of putative psyllid vectors of apple proliferation (AP), carried out in 2009 and 2010, Cacopsylla picta (Förster) populations infected with ‘Candidatus Phytoplasma mali’ were detected in at least two commercial apple (Malus domestica Borkh.) orchards in southern Finland (1). To establish the presence of ‘Ca. P. mali’ in apple trees, a survey was conducted in 17 commercial apple orchards in August 2012. Phytosanitary inspectors tracked the source of the ‘Ca. P. mali’ b
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The human gut and groundwater harbor non-photosynthetic bacteria belonging to a new candidate phylum sibling to Cyanobacteria

Citation
Di Rienzi et al. (2013). eLife 2
Names
“Gastranaerophilales” “Melainobacteriota”
Abstract
Cyanobacteria were responsible for the oxygenation of the ancient atmosphere; however, the evolution of this phylum is enigmatic, as relatives have not been characterized. Here we use whole genome reconstruction of human fecal and subsurface aquifer metagenomic samples to obtain complete genomes for members of a new candidate phylum sibling to Cyanobacteria, for which we propose the designation ‘Melainabacteria’. Metabolic analysis suggests that the ancestors to both lineages were non-photosynth
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