科研产出
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142801A reconstruction method for incomplete pig point clouds based on stepwise hole filling and its applications
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来源:BIOSYSTEMS ENGINEERING
关键词: 3D reconstruction; 3D point cloud; Hole filling; Pig body size measurement; Pig weight estimation
年份:2025
142802Two E-clade protein phosphatase 2Cs enhance ABA signaling by dephosphorylating ABI1 in Arabidopsis
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来源:MOLECULAR PLANT
关键词: abscisic acid signaling; ABI1; E-clade protein phosphatase 2C; dephosphorylation; ABA response
年份:2025
142803A chromosome-level genome assembly of the aphid Semiaphis heraclei (Takahashi)
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来源:SCIENTIFIC DATA
年份:2025
142804New insights into the cold tolerance of upland switchgrass by integrating a haplotype-resolved genome and multi-omics analysis
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来源:GENOME BIOLOGY
关键词: Upland switchgrass; Haplotype-resolved genomes; Allele-specific expression genes; Cold tolerance
年份:2025
142805N-propyl gallate treatment maintains postharvest quality and doubles the shelf life of Akebia trifoliata fruit
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来源:FOOD CONTROL
关键词: Akebia trifoliata fruit; Postharvest storage; N-propyl gallate (nPG); Shelf life
年份:2025
142806A novel lncRNA YIL163C enhances genomic stability and antifungal resistance via the DNA damage response in Saccharomyces cerevisiae
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来源:FRONTIERS IN MICROBIOLOGY
关键词: lncRNA; DNA damage response; 5-fluorocytosine; phosphoproteome; YIL163C
年份:2025
142807How can China curb biological invasions to meet Kunming-Montreal Target 6?
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来源:FRONTIERS IN ECOLOGY AND THE ENVIRONMENT
年份:2025
142808QTL mapping and multi-omics identify candidate genes for protein and oil in soybean
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来源:THEORETICAL AND APPLIED GENETICS
年份:2025
142809Remapping the spatial distribution of neutralizing sites and their immunodominance on the capsid of different topotypes of FMDV serotype O by site-directed competitive ELISA for detection of neutralizing antibodies
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来源:MICROBIOLOGY SPECTRUM
关键词: foot-and-mouth disease virus; serotype O; neutralizing antigenic sites; neutralizing antibody; competitive ELISA
年份:2025
142810VvNAC33 functions as a key regulator of drought tolerance in grapevine by modulating reactive oxygen species production
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来源:PLANT PHYSIOLOGY AND BIOCHEMISTRY
关键词: Drought stress; Grapevine; Reactive oxygen species; Transcriptome; VvNAC33
年份:2025