科研产出
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136861Sodium dehydroacetate induces porcine oocyte toxicity by inhibiting TCA cycle activity and mitochondrial function, with nicotinamide mononucleotide as a potential protective agent
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来源:FOOD AND CHEMICAL TOXICOLOGY
关键词: Na-DHA; Oocyte; Metabolomics; NMN; Mitochondria
年份:2025
136862GWAS and RNA-seq reveal novel loci and genes of low-nitrogen tolerance in cucumber (Cucumis sativus L.)
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机构:
来源:FRONTIERS IN PLANT SCIENCE
关键词: nitrogen use efficiency; GWAS; RNA-Seq; VIGS; CsGATA9
年份:2025
136863Genetic diversity and population structure analysis of 418 tomato cultivars based on single nucleotide polymorphism markers
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来源:FRONTIERS IN PLANT SCIENCE
关键词: genetic relationship; population structure; SNPs; DNA fingerprint; SNP markers
年份:2024
136864Nitrogen addition enhances soil carbon and nutrient dynamics in Chinese croplands: a machine learning and nationwide synthesis
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来源:CARBON BALANCE AND MANAGEMENT
关键词: Nitrogen addition; Soil organic carbon; Nutrient cycling; Machine learning; Carbon sequestration; China
年份:2025
136865Cold-blooded vertebrates evolved regulatory B cells to participate in inflammatory diseases
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来源:CELL COMMUNICATION AND SIGNALING
关键词: Regulatory B cell; IL-10; IL-35; Inflammatory bowel disease; Evolution
年份:2025
136866The H5N6 Virus Containing Internal Genes From H9N2 Exhibits Enhanced Pathogenicity and Transmissibility
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来源:TRANSBOUNDARY AND EMERGING DISEASES
年份:2025
136867First mitochondrial genome of Lutjanus ehrenbergii_ Peters 1869 (Lutjaniformes: Lutjanidae: Lutjanus) and phylogenetic analysis
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来源:MITOCHONDRIAL DNA PART B-RESOURCES
关键词: Sanger sequencing; Lutjanus ehrenbergii; mitogenome; phylogenetic
年份:2025
136868Viral RNA polymerase as a SUMOylation decoy inhibits RNA quality control to promote potyvirus infection
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来源:NATURE COMMUNICATIONS
年份:2025
136869Haplotype-resolved genome of a papeda provides insights into the geographical origin and evolution of Citrus
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来源:JOURNAL OF INTEGRATIVE PLANT BIOLOGY
关键词: citrus; domestication; evolution; haplotype-resolved genome; papeda
年份:2025
136870In-vitro antifungal potential of myco versus bacteria synthesized ZnO NPs against chickpea and apricot pathogen
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机构:
来源:SCIENTIFIC REPORTS
关键词:
Myco-synthesis; Bacteria-synthesis; Antifungal activity; Chickpea; Apricot; Pathogen;
年份:2025