Enrichment and characterization of a nitric oxide-reducing microbial community in a continuous bioreactor [0.03%]
连续反应器中一氧化氮还原微生物群落的富集及其特征分析
Paloma Garrido-Amador,Niek Stortenbeker,Hans J C T Wessels et al.
Paloma Garrido-Amador et al.
Nitric oxide (NO) is a highly reactive and climate-active molecule and a key intermediate in the microbial nitrogen cycle. Despite its role in the evolution of denitrification and aerobic respiration, high redox potential and capacity to su...
Human FcγRIIIa activation on splenic macrophages drives dengue pathogenesis in mice [0.03%]
人FcγRIIIa在脾细胞上的激活驱动小鼠登革热的病程发展
Rachel Yamin,Kevin S Kao,Margaret R MacDonald et al.
Rachel Yamin et al.
Although dengue virus (DENV) infection typically causes asymptomatic disease, DENV-infected patients can experience severe complications. A risk factor for symptomatic disease is pre-existing anti-DENV IgG antibodies. Cellular assays sugges...
Bridgious Walusimbi
Bridgious Walusimbi
R Elizabeth Sockett
R Elizabeth Sockett
Phytophthora sojae boosts host trehalose accumulation to acquire carbon and initiate infection [0.03%]
大豆疫霉菌促进宿主海藻糖积累以获取碳源并启动感染
Xiaoguo Zhu,Di Fang,Die Li et al.
Xiaoguo Zhu et al.
Successful infection by pathogenic microbes requires effective acquisition of nutrients from their hosts. Root and stem rot caused by Phytophthora sojae is one of the most important diseases of soybean (Glycine max). However, the specific f...
Parabacteroides distasonis uses dietary inulin to suppress NASH via its metabolite pentadecanoic acid [0.03%]
颤螺菌通过其代谢产物十五酸抑制非酒精性脂肪肝病
Wenchao Wei,Chi Chun Wong,Zhongjun Jia et al.
Wenchao Wei et al.
Non-alcoholic steatohepatitis (NASH) is the severe form of non-alcoholic fatty liver disease, and is characterized by liver inflammation and fat accumulation. Dietary interventions, such as fibre, have been shown to alleviate this metabolic...
D-amino acids signal a stress-dependent run-away response in Vibrio cholerae [0.03%]
D-型氨基酸可诱导霍乱弧菌产生应激依赖性逃逸反应
Oihane Irazoki,Josy Ter Beek,Laura Alvarez et al.
Oihane Irazoki et al.
To explore favourable niches while avoiding threats, many bacteria use a chemotaxis navigation system. Despite decades of studies on chemotaxis, most signals and sensory proteins are still unknown. Many bacterial species release D-amino aci...
Joel Rivera-Cardona,Christopher B Brooke
Joel Rivera-Cardona