科研产出
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126991Evaluating the contribution of decreasing heights of photovoltaic panels on light environment and agricultural production in agrivoltaic systems
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来源:JOURNAL OF CLEANER PRODUCTION
关键词: Agrivoltaics; Height; Light environment; Numerical simulation; Agricultural production
年份:2025
126992Soil organic matter enhanced the soil colloidal phosphorus via co-precipitation with Fe/Al in paddy soil
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来源:COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS
关键词: Colloidal phosphorus; Organic fertilizer; Organic carbon; Co-precipitates; Paddy soil
年份:2025
126993Identification of MsCYP79 and MsCYP83 gene families and its response to mechanical damage in Medicago sativa L.
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来源:PLOS ONE
年份:2025
126994Recognition of Chinese wolfberry images with windy and sandy noises using improved YOLOv8
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来源:INTERNATIONAL JOURNAL OF AGRICULTURAL AND BIOLOGICAL ENGINEERING
关键词: image recognition; Chinese wolfberry; windy and sandy noise; YOLOv8; attention module
年份:2025
126995Application of flavonoid compounds suppresses the cotton aphid, Aphis gossypii
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来源:FRONTIERS IN PLANT SCIENCE
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年份:2025
126996An mRNA vaccine against monkeypox virus inhibits infection by co-activation of humoral and cellular immune responses
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来源:NATURE COMMUNICATIONS
年份:2025
126997A high-quality chromosome-level genome assembly for the agricultural pest Mythimna separata
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来源:SCIENTIFIC DATA
年份:2025
126998Microencapsulation of Acer truncatum seed oil using chickpea protein isolate-low/high-methoxy citrus pectin complex coacervates: Preparation, stability analysis, and application in milk
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来源:FOOD HYDROCOLLOIDS
关键词: Chickpea protein isolate; Low/high-methoxy citrus pectin; Complex coacervates; Acer truncatum seed oil; Microencapsulation
年份:2025
126999Exploring Antibacterial Activity of Fish Protein Hydrolysate In Vitro Against Vibrio Strains and Disease Resistance to V. harveyi in Turbot (Scophthalmus maximus)
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来源:AQUACULTURE NUTRITION
关键词:
antibacterial activity; fish protein hydrolysate; immune response; intestinal microbiota;
年份:2025
127000GBSSI loss-of-function in potato affects dynamics in starch biosynthesis and breakdown in leaves and alters leaf starch multi-level structure
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来源:CARBOHYDRATE POLYMERS
关键词: Potato; Leaf starch; Starch structure; Starch biosynthesis and breakdown; Amylopectin; Amylose
年份:2025