科研产出
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125881The Impact of Seasonal Climate on Dryland Vegetation NPP: The Mediating Role of Phenology
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来源:SUSTAINABILITY
关键词: arid regions; causal mediation analysis; climate change; vegetation phenology; vegetation net primary productivity
年份:2024
125882LAZARUS 1 functions as a positive regulator of plant immunity and systemic acquired resistance
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来源:FRONTIERS IN PLANT SCIENCE
关键词: salicylic acid; N-hydroxypipecolic acid; CBP60g; SARD1; LAZ1
年份:2024
125883ZF-HD gene family in rapeseed (Brassica napus L.): genome-wide identification, phylogeny, evolutionary expansion and expression analyses
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来源:BMC GENOMICS
关键词:
年份:2024
125884Probiotic Potential of Enterococcus lactis GL3 Strain Isolated from Honeybee (Apis mellifera L.) Larvae: Insights into Its Antimicrobial Activity Against Paenibacillus larvae
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来源:VETERINARY SCIENCES
关键词:
honeybee larvae; lactic acid bacteria;
年份:2025
125885Temperature-controllable antibacterial film mediated by a photoresponsive metal-polyphenol framework for long-term food preservation
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来源:FOOD CONTROL
关键词: Cu-CGA nanoparticles; Photothermal; Antimicrobial activity; Food packaging; Cherry tomatoes preservation
年份:2025
125886Identification of ZmSNAC06, a Maize NAC Family Transcription Factor with Multiple Transcripts Conferring Drought Tolerance in Arabidopsis
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来源:PLANTS-BASEL
关键词:
maize (
年份:2025
125887DF-DETR: Dead fish-detection transformer in recirculating aquaculture system
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来源:AQUACULTURE INTERNATIONAL
关键词: DF-DETR; Dead fish detection; Feature fusion; Recirculating aquaculture system
年份:2025
125888Unveiling lotus root processing under vacuum microwave: starch-malic acid interactions based on moisture, structure, and in vitro digestibility
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来源:FOOD CHEMISTRY
关键词: Dielectric properties; Lotus root starch; Esterification; In vitro digestion
年份:2025
125889An Insight into Differentially Expressed Genes and MicroRNAs in the Pituitary Glands of the Two Estrous Phases of Sheep with Different FecB Genotypes
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来源:ANIMALS
关键词:
年份:2025
125890A Rapid PCR-LAMP Assay for the Early Detection of Lasiodiplodia theobromae from Basal Stem Rot-Infected Passion Fruit Plants
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来源:MOLECULAR BIOTECHNOLOGY
关键词:
Passion fruit; Basal stem rot; Loop-mediated isothermal amplification; Hydroxy naphthol blue; Phytopathogen detection;
年份:2025