科研产出
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133851Addition of hydrothermal biochar significantly alters growth of forage oats and rhizosphere microbiota
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机构:
来源:ISCIENCE
年份:2025
133852Egg matrices alleviate long-term florfenicol-induced behavioral alterations via the gut microbiota and host metabolism in mice
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机构:
来源:FOOD & FUNCTION
年份:2025
133853Morphological changes and spray coverage of pear leaves and canopy at different phenological periods during air-assisted spraying
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机构:
来源:CROP PROTECTION
关键词: Leaf deformation; Canopy morphological changes; Spray coverage; Phenological periods
年份:2025
133854Identification and fine-mapping of qNCLB3.04 resistant to Northern Corn Leaf Blight
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机构:
来源:MOLECULAR BREEDING
关键词: NCLB; Maize; qNCLB3.04; Resistance; Fine-mapping
年份:2025
133855Minimalist nanobody architecture: A double-edged sword for immunological analysis
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机构:
来源:TRAC-TRENDS IN ANALYTICAL CHEMISTRY
关键词: Nanobody-based immunoassay; Miniaturized structure; Small size; Bioconjugation chemistry
年份:2025
133856Isolation, identification, and virtual screening of peptides with ferrous ion chelating activity from poultry blood hemoglobin
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机构:
来源:LWT-FOOD SCIENCE AND TECHNOLOGY
关键词: Poultry blood hemoglobin; Ferrous ion chelating peptide; Virtual screening; Molecular docking
年份:2025
133857Microbial degradation of Diquat by strain Meyerozyma guilliermondii Wyslmt: Identification of transformation products and clarification of degradation pathways
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来源:FRONTIERS IN MICROBIOLOGY
关键词:
Diquat;
年份:2025
133858Water migration and browning mechanisms in postharvest litchi pericarp: Insights from LF NMR
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机构:
来源:POSTHARVEST BIOLOGY AND TECHNOLOGY
关键词: Browning; Pericarp; Water migration
年份:2025
133859Multi-omics analysis provides preliminary insights into the mechanisms involved in dormancy and germination in asparagus (Asparagus officinalis)
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机构:
来源:SCIENTIA HORTICULTURAE
关键词: Asparagus dormancy and germination; Integrated omics; Hormone signaling; Phenylpropanoid biosynthesis; Jasmonate pathway
年份:2025
133860Trans-2-pentenal suppresses potato common scab via dual inhibition of thiamine and energy metabolism in Streptomyces scabies
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机构:
来源:PEST MANAGEMENT SCIENCE
关键词: potato common scab; Streptomyces scabies; Streptomyces enissocaesilis; volatile organic compounds; thiamine metabolism; trans-2-pentenal
年份:2025