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126501Machine Learning-Based identification of resistance genes associated with sunflower broomrape

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来源:PLANT METHODS

关键词: Machine learning; Feature selection; Resistance genes; Sunflower broomrape

年份:2025

126502Magnesium-dependent phosphatase 1 (MDP1) interacts with WRKY 53 and protein phosphatase 2C 80 (PP2C80) to improve salt stress tolerance by scavenging reactive oxygen species in Salix psammophila

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来源:INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES

关键词: Salt stress; SpsWRKY53; SpsMDP1; Salix psammophila

年份:2025

126503Hydrochar prepared from different sources of kitchen waste for paddy soil application: Closing the gap between resource recycling and gaseous nitrogen reduction

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来源:SOIL & TILLAGE RESEARCH

关键词: Hydrothermal carbonization; Kitchen waste; N2O emission; Dissolved organic matter; Soil microorganisms

年份:2025

126504The Effect of Silage Microbial Inoculants on the Silage Quality of WL358HQ Alfalfa

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来源:MICROORGANISMS

关键词: WL358HQ Alfalfa; silage; fermentation quality; nutritional quality

年份:2025

126505Review of the Pathogenic Mechanism of Grape Downy Mildew (Plasmopara viticola) and Strategies for Its Control

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来源:MICROORGANISMS

关键词: Plasmopara viticola; infestation cycle; effectors; integrated control

年份:2025

126506A significant genomic region underlying growth traits in adult Beijing You chicken identified by genome-wide association analysis

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来源:POULTRY SCIENCE

关键词: Beijing You Chicken; Body weight; GWAS

年份:2025

126507Differential physiological and proteomic responses of barley genotypes to sulfur availability

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来源:PLANT GROWTH REGULATION

关键词: Sulfur deficiency; Hordeum vulgare; Nutrient composition; Ionomics; Proteomics; Amino acids

年份:2025

126508OsBZR4 regulates temperature-dependent embryogenesis in rice

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来源:NATURE COMMUNICATIONS

年份:2025

126509Simultaneous regulation of both lignin and cellulose biosynthesis modifies xylem fiber properties in Populus

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来源:FRONTIERS IN PLANT SCIENCE

关键词: lignin; Populus; cellulose; cell wall; fiber cell

年份:2025

126510Transcriptomic study of the role of MeFtsZ2-1 in pigment accumulation in cassava leaves

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来源:BMC GENOMICS

关键词: MeFtsZ2-1; Cassava; Physiology; Transcriptome; Pigment accumulation

年份:2024