科研产出
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136651Three cytochrome P450s in Laodelphax striatellus metabolize imidacloprid and nitenpyram through different catalytic reactions
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来源:PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY
关键词: Laodelphax striatellus; Cytochrome P450s; Neonicotinoids; Metabolism
年份:2025
136652Transcriptional Regulation of Sugar Accumulation and Composition in Jujube Fruit: The Roles of ZjSWEET15 and ZjSUS2 Genes
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来源:SCIENTIA HORTICULTURAE
关键词: Jujube; Sucrose; Hexose; Sugar transporter; Sucrose synthase
年份:2025
136653Impact of hyperspectral reconstruction techniques on the quantitative inversion of rice physiological parameters: A case study using the MST plus plus model
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来源:JOURNAL OF INTEGRATIVE AGRICULTURE
关键词: multistage spectral-wise transformer; hyperspectral reconstruction; rice; dry matter content; height
年份:2025
136654Antagonistic systemin receptors integrate the activation and attenuation of systemic wound signaling in tomato
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来源:DEVELOPMENTAL CELL
年份:2025
136655Mycotoxins and secondary metabolites from fruit postharvest pathogenic Penicillium species
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来源:FOOD CHEMISTRY
关键词: Pome; citrus; Blue mold; Toxicity; Detection; Detoxification; Quality and safety
年份:2025
136656A new cage design to test pesticide impacts on honey bees via toxicant exposure through sucrose, pollen and beeswax simultaneously
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来源:ENVIRONMENTAL RESEARCH
关键词: Apis mellifera; Chronic oral toxicity; Chronic contact toxicity; Honey bee risk assessment; Dimethoate; Imidacloprid
年份:2025
136657RNA-Seq Identification of Peanut Callus-Specific Promoters and Evaluation of Base-Editing Efficiency
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来源:PLANTS-BASEL
关键词: peanut; callus-specific promoter; off-target reduction; cytosine base editing; genome editing efficiency
年份:2025
136658Increased Oxygen Treatment in the Fermentation Process Improves the Taste and Liquor Color Qualities of Black Tea
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来源:FOODS
关键词: black tea; oxygen treatment; fermentation; sensory quality; metabolomics
年份:2025
136659Cotton STARD Gene Family: Characterization, Evolution, and Expression Profiles During Salt Stress
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来源:GENES
关键词:
cotton;
年份:2025
136660Transcriptomics and Metabolomics Combined to Analyze the Response Mechanism of Silkworm Eggs to High-Temperature Stress
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机构:
来源:INSECTS
关键词: transcriptomics; metabonomics; silkworm egg; instant acid-impregnated eggs; high temperature stress
年份:2025