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Changes in carbohydrate metabolism in Citrus sinensis infected with ‘ Candidatus Liberibacter asiaticus’

Citation
Fan et al. (2010). Plant Pathology 59 (6)
Names
Ca. Liberibacter asiaticus
Abstract
Changes in carbohydrate metabolism in sweet orange ( Citrus sinensis ) infected with ‘ Candidatus Liberibacter asiaticus’, a purported cause of citrus Huanglongbing (HLB), were investigated. Starch levels in HLB‐infected leaves with and without symptoms increased 3·1‐ and 7·9‐fold, respectively, compared to healthy controls. In symptomless leaves, sucrose and fructose accumulated significantly (
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Induction of High Endothelial Venule‐like Vessels Expressing GlcNAc6ST‐1‐mediated L‐selectin Ligand Carbohydrate and Mucosal Addressin Cell Adhesion Molecule 1 (MAdCAM‐1) in a Mouse Model of “Candidatus Helicobacter heilmannii”‐induced Gastritis and Gastric Mucosa‐associated Lymphoid Tissue (MALT) Lymphoma

Citation
Suzuki et al. (2010). Helicobacter 15 (6)
Names
Ca. Helicobacter heilmannii
Abstract
AbstractBackground:  “Candidatus Helicobacter heilmannii” induce chronic gastritis, which eventually leads to gastric B‐cell type mucosa‐associated lymphoid tissue (MALT) lymphoma. This study was performed using an animal model of infection with “Candidatus Helicobacter heilmannii” to elucidate how this chronic inflammation is induced or maintained.Materials and Methods:  BALB/c mice were infected with the “Candidatus Helicobacter heilmannii” isolate SH4. The animals were examined at 8, 26, 54,
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Ekhidna lutea gen. nov., sp. nov., a member of the phylum Bacteroidetes isolated from the South East Pacific Ocean

Citation
Alain et al. (2010). International Journal of Systematic and Evolutionary Microbiology 60 (12)
Names
“Ekhidna algicida”
Abstract
A novel aerobic, heterotrophic bacterium, designated BiosLi39T, was isolated from the South East Pacific Ocean. Cells were Gram-negative gliding rods forming yellow colonies on marine agar. The isolate was oxidase-, catalase- and alkaline phosphatase-positive andβ-galactosidase-negative. Strain BiosLi39Tgrew at 20-37 °C (optimum 30 °C), at pH 7.0–9.0 (optimum pH 8.0) and with 20–60 g NaCl l−1(optimum 30–50 g NaCl l−1). The fatty acids (>1 %) comprised iso-C14 : 0, iso-C15 : 1G, iso-C15 : 0, a
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