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First Report of ‘Candidatus Liberibacter solanacearum’ on Carrot in Africa

Citation
Tahzima et al. (2014). Plant Disease 98 (10)
Names
“Liberibacter solanacearum”
Abstract
In March of 2014, carrot plants (Daucus carota L. var. Mascot) exhibiting symptoms of yellowing, purpling, and curling of leaves, proliferation of shoots, formation of hairy secondary roots, general stunting, and plant decline were observed in commercial fields in the Gharb region of Morocco. The symptoms resembled those caused by phytoplasmas, Spiroplasma citri, or ‘Candidatus Liberibacter solanacearum’ infection (1,2,3). About 30% of the plants in each field were symptomatic and plants were i
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“Candidatus Liberibacter asiaticus” Prophage Late Genes May Limit Host Range and Culturability

Citation
Fleites et al. (2014). Applied and Environmental Microbiology 80 (19)
Names
Ca. Liberibacter asiaticus
Abstract
ABSTRACT “ Candidatus Liberibacter asiaticus” is an uncultured alphaproteobacterium that systemically colonizes its insect host both inter- and intracellularly and also causes a severe, crop-destroying disease of citrus called huanglongbing, or citrus “greening.” In planta , “ Ca . Liberibacter asiaticus” is also systemic but phloem limited. “ Ca . Liberibacter asiaticus” strain
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Chitinimonas prasina sp. nov., isolated from lake water

Citation
Li et al. (2014). International Journal of Systematic and Evolutionary Microbiology 64 (Pt_9)
Names
Chitinimonas
Abstract
A Gram-stain-negative, elongated rod-shaped, motile by gliding, green-pigmented, aerobic bacterial strain, designated LY03T, was isolated from lake water in Xiamen, Fujian Province, China. Phylogenetic analysis based on 16S rRNA gene sequencing revealed that the isolate was a member of the genus Chitinimonas , which belongs to the family Burkholderiaceae
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Metagenomic characterization of ‘ <scp> C </scp> andidatus   <scp>D</scp> efluviicoccus tetraformis strain <scp>TFO</scp> 71’, a tetrad‐forming organism, predominant in an anaerobic–aerobic membrane bioreactor with deteriorated biological phosphorus removal

Citation
Nobu et al. (2014). Environmental Microbiology 16 (9)
Names
Abstract
Summary In an acetate‐fed anaerobic–aerobic membrane bioreactor with deteriorated enhanced biological phosphorus removal ( EBPR ), D efluviicoccus ‐related tetrad‐forming organisms ( DTFO ) were observed to predominate in the microbial community. Using metagenomics, a partial
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