科研产出
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131801N6-Methyladenosine Modification Regulates Prunus Necrotic Ringspot Virus Infection in Cucumis sativus
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来源:JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
关键词: epitranscriptomes; N6-methyladenosine; PNRSV; m(6)A readers; phenylalanine ammonia-lyase
年份:2025
131802Chondroitin sulfate alleviates leaf senescence of Chinese flowering cabbage by modulating homeostasis of ROS and chlorophyll catabolism during storage
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来源:POSTHARVEST BIOLOGY AND TECHNOLOGY
关键词: Chinese flowering cabbage; Leaf senescence; Chondroitin sulfate; ROS; Chlorophyll catabolism
年份:2025
131803Straw mineralization and carbon dioxide emissions in soils with different salinity levels
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来源:ENVIRONMENTAL SCIENCE-PROCESSES & IMPACTS
年份:2025
131804Structural characterization of β-glucan in Hericium erinaceus pretreated by steam explosion and its effects on human gut microbiota in vitro
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来源:FOOD CHEMISTRY
关键词: beta-glucan; Hericium erinaceus; Structural characters; Composition of gut microbiota; Short chain fatty acids
年份:2025
131805Metabolomics and Transcriptomics Reveal the Function of Trigonelline and Its Synthesis Gene BrNANMT in Clubroot Susceptibility of Brassica rapa
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来源:PLANT CELL AND ENVIRONMENT
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年份:2025
131806Evidence of WNV infection in migratory birds passing through Xinjiang, China, using viral genome amplicon approach
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来源:FRONTIERS IN MICROBIOLOGY
关键词: West Nile virus; migratory bird; amplicon; fecal samples; epidemiology
年份:2025
131807Uncovering the key miRNA-target network of tea plants in resistance to sooty mold disease
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来源:BMC PLANT BIOLOGY
关键词: Tea plants; Sooty mold disease; Defense response; Integration analysis; miRNA-target circuits
年份:2025
131808Transgenic Maize of ZmMYB3R Shapes Microbiome on Adaxial and Abaxial Surface of Leaves to Promote Disease Resistance
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来源:MICROORGANISMS
关键词: disease resistance; microbiome; niche; phyllosphere; transgene
年份:2025
131809Recent advances in the effect of simulated gastrointestinal digestion and encapsulation on peptide bioactivity and stability
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来源:FOOD & FUNCTION
年份:2025
131810In vitro and in vivo immune-enhancing effects of punicic acid and the action mechanisms as revealed via microbiome and lipid profiling
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来源:FOOD & FUNCTION
年份:2025