科研产出
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100151Progress on Molecular Mechanism of Aluminum Resistance in Rice
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来源:RICE SCIENCE
关键词: rice; aluminum; Al transporter; Al tolerance; Al toxicity
年份:2020
100152Dominant early heading without yield drag in a sister-line BC breeding progeny DEH_229 is controlled by multiple genetic factors with main-effect loci
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来源:CROP JOURNAL
关键词: Dominant early heading; Yield drag; Sister-line BC breeding; Multiple genetic factors; Cryptic genetic variation (CGV); Rice (Oryza sativa L.)
年份:2021
100153Unraveling the characterization of minichromosome maintenance complex component 2 (MCM2) gene and its SNPs associated with cold-tolerance trait in Pacific white shrimp (Litopenaeus vannamei)
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来源:AQUACULTURE REPORTS
关键词: Pacific white shrimp; Minichromosome maintenance complex component 2; Low-temperature stress; Molecular cloning; Single-nucleotide polymorphism
年份:2021
100154Genomic Prediction of Additive and Dominant Effects on Wool and Blood Traits in Alpine Merino Sheep
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来源:FRONTIERS IN VETERINARY SCIENCE
关键词: Alpine Merino sheep; additive effects; dominant effects; prediction accuracy; genomic prediction
年份:2020
100156Damage of extreme water levels and the adaptation cost of dikes in the Pearl River Delta
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来源:JOURNAL OF WATER AND CLIMATE CHANGE
关键词: adaptation cost; extreme events; Pearl River Delta; sea-level rise; storm surge
年份:2020
100157Antibiotics increased host insecticide susceptibility via collapsed bacterial symbionts reducing detoxification metabolism in the brown planthopper, Nilaparvata lugens
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来源:JOURNAL OF PEST SCIENCE
关键词: Bacterial symbionts; Detoxification metabolism; Nilaparvata lugens; P450s; Gsts
100158Winter warming in Alaska accelerates lignin decomposition contributed by Proteobacteria
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来源:MICROBIOME
年份:2020
100159Sharpening ECOSTRESS and VIIRS land surface temperature using harmonized Landsat-Sentinel surface reflectances
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来源:REMOTE SENSING OF ENVIRONMENT
关键词: Remote sensing; Thermal sharpening; Land surface temperature; Data Mining Sharpener; Evapotranspiration
年份:2020
100160Citrate utilization under anaerobic environment in Escherichia coli is under direct control of Fnr and indirect control of ArcA and Fnr via CitA-CitB system
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来源:ENVIRONMENTAL MICROBIOLOGY
年份:2021