科研产出
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138311Bacterial ghosts engineered with lipidated antigens as an adjuvant-free vaccine for Chlamydia abortus
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来源:INTERNATIONAL JOURNAL OF PHARMACEUTICS
关键词: Bacterial ghost; Vaccine; lpp'-ompA; Lipoprotein; Chlamydia abortus
年份:2024
138312Monitoring Cattle Ruminating Behavior Based on an Improved Keypoint Detection Model
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来源:ANIMALS
关键词: cattle; improved YOLOv8-pose; rumination behavior; peak detection
年份:2024
138313Development and evaluation of three multienzyme isothermal rapid amplification assays for fowl adenovirus serotype 4
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来源:POULTRY SCIENCE
关键词: Fowl adenovirus serotype 4; Multienzyme isothermal rapid amplification; Specificity; Sensitivity; Visible detection
年份:2024
138314SfREPAT38, a pathogen response gene (REPAT), is involved in immune response of Spodoptera frugiperda larvae through mediating Toll signalling pathway
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来源:INSECT MOLECULAR BIOLOGY
关键词: Bacillus thuringiensis; RNA interference; SfREPAT38; Spodoptera frugiperda; Toll signalling pathway
年份:2024
138315Comprehensive phytohormone metabolomic and transcriptomic analysis of tobacco (Nicotiana tabacum) infected by tomato spotted wilt virus (TSWV)
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来源:VIRUS RESEARCH
关键词: Tobacco; TSWV; Phytohormonal metabolomic; Transcriptomic; Combined analysis
年份:2024
138316Transcriptomics and metabolomics analyses provide insights into postharvest ripening and senescence of tomato fruit under low temperature
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来源:HORTICULTURAL PLANT JOURNAL
关键词: Metabolomics; Tomato; Transcriptomics; Temperature; Fruit ripening
年份:2023
138317Genetic Diversity and Population Structure of Camellia drupifera (Theaceae) and Its Related Species Evaluated by SSR Markers
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来源:FORESTS
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年份:2024
138318Effects of Tropical Typical Organic Materials on Soil Physicochemical Properties and Microbial Community Structure
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来源:AGRONOMY-BASEL
关键词: pH/EC; soil organic acids; soil organic carbon; soil aggregates; latosol
年份:2025
138319Genome-Wide Analysis of the PERK Gene Family in Brassica napus L. and Their Potential Roles in Clubroot Disease
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来源:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
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年份:2025
138320Gut microbiota-related glutathione metabolism is key mechanism for sulforaphane ameliorating ulcerative colitis
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来源:JOURNAL OF NUTRITIONAL BIOCHEMISTRY
关键词: Sulforaphane; Intestinal barrier; Gut microbiota and metabolites; MAPK/NF-kappa B signaling pathway
年份:2025