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First Report of Sweet Cherry Virescence Disease in China and Its Association with Infection by a ‘Candidatus Phytoplasma ziziphi’-Related Strain

Citation
Wang et al. (2014). Plant Disease 98 (3)
Names
Ca. Phytoplasma ziziphi
Abstract
Sweet cherry (Prunus avium L.) is a deciduous tree originating in the Black Sea/Caspian Sea region where Asia and Europe converge. Being highly valued for its timber and fruit, sweet cherry has been cultivated and naturalized on all continents. Over the past decade, the area of sweet cherry cultivation increased rapidly in China and has reached 140,000 ha. In April 2013, sweet cherry trees (cv. Summit) exhibiting floral virescence symptoms were observed in two orchards located in suburban Taian
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Genetic and functional properties of uncultivated MCG archaea assessed by metagenome and gene expression analyses

Citation
Meng et al. (2014). The ISME Journal 8 (3)
Names
“Bathyarchaeota”
Abstract
Abstract The Miscellaneous Crenarchaeota group (MCG) Archaea is one of the predominant archaeal groups in anoxic environments and may have significant roles in the global biogeochemical cycles. However, no isolate of MCG has been cultivated or characterized to date. In this study, we investigated the genetic organization, ecophysiological properties and evolutionary relationships of MCG archaea with other archaeal members using metagenome information and the result of gene express
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Candidatus Competibacter’-lineage genomes retrieved from metagenomes reveal functional metabolic diversity

Citation
McIlroy et al. (2014). The ISME Journal 8 (3)
Names
Plasticicumulans “Competibacter denitrificans” “Contendibacter odensensis”
Abstract
Abstract The glycogen-accumulating organism (GAO) ‘Candidatus Competibacter’ (Competibacter) uses aerobically stored glycogen to enable anaerobic carbon uptake, which is subsequently stored as polyhydroxyalkanoates (PHAs). This biphasic metabolism is key for the Competibacter to survive under the cyclic anaerobic-‘feast’: aerobic-‘famine’ regime of enhanced biological phosphorus removal (EBPR) wastewater treatment systems. As they do not contribute to phosphorus (P) removal, but c
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