科研产出
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136011Transcriptome Analysis Reveals the Role of OsCBM1 in Rice Defense Against Xanthomonas oryzae pv.oryzae
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机构:
来源:BIOMOLECULES
关键词:
malectin-like domain-containing protein;
年份:2025
136012Transcriptional and metabolic analysis of oleic acid synthesis in seedless and tenera oil palm species
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来源:FRONTIERS IN PLANT SCIENCE
关键词: oil palm; oleic acid biosynthesis; transcriptome; metabolome; lipid metabolism
年份:2025
136013Paddy-Upland Rotation Improves Rice Growth and Reduces Greenhouse Gas Emissions in Winter Paddy Fields
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机构:
来源:AGRONOMY-BASEL
关键词: rice; greenhouse gas; paddy-upland rotation; winter paddy field; yield
年份:2025
136014OsABAR1, a novel GRAM domain-containing protein, confers drought and salt tolerance via an ABA-dependent pathway in rice
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机构:
来源:PLANT PHYSIOLOGY AND BIOCHEMISTRY
关键词: Rice; OsABAR1; GRAM domain Protein; Drought and salt tolerance; ABA pathway
年份:2020
136015Effect of Powdery Mildew Pathogen Inoculation on Gene Expression Levels and Root Microbial Community Structures in Bottle Gourd and Pumpkin Seedlings
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来源:JOURNAL OF SOIL SCIENCE AND PLANT NUTRITION
关键词: Fungal pathogen; Grafted plant; Nutrient uptake; Rootstock variety; Seedling growth
年份:2025
136016Fine Mapping of Major qTAC8c for Tiller Angle in Oryza rufipogon
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来源:JOURNAL OF PLANT GROWTH REGULATION
关键词: Oryza rufipogon; Tiller angle; 8K chip; qTAC8c; Fine mapping
年份:2024
136017Interactions of Fe, Mn, Zn, and Cd in Soil-Rice Systems: Implications for Reducing Cd Accumulation in Rice
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机构:
来源:TOXICS
关键词: cadmium; micronutrient; acidic and alkaline soils; translocation factor; correlation
年份:2025
136018Cloning, Expression and Stability Analysis of Candidate Reference Genes in the Glacial Relict Hucho bleekeri Under Immune Stress
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来源:JOURNAL OF APPLIED ICHTHYOLOGY
关键词: qPCR; RefFinder; Salmonidae; tissue distribution
年份:2025
136019Improving Rice Quality by Regulating the Heading Dates of Rice Varieties without Yield Penalties
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机构:
来源:PLANTS-BASEL
关键词: Rice (Oryza sativa L); flowering time; OsMADS50; rice quality; CRISPR/Cas9
年份:2024
136020A fungal chromatin remodeler drives transcription by establishing an open chromatin architecture and activated histone environment
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机构:
来源:CELL REPORTS
年份:2025