科研产出
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22Quantitative trait locus mapping of yield and plant height in autotetraploid alfalfa (Medicago sativa L.)
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来源:CROP JOURNAL
关键词: Alfalfa; Yield; Plant height; Genetic linkage map; Quantitative trait loci
年份:2020
23Mut9p-LIKE KINASE Family Members: New Roles of the Plant-Specific Casein Kinase I in Plant Growth and Development
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来源:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
关键词: casein kinase I; phosphorylation; plant specific CK1
年份:2020
24Arabidopsis thaliana MLK3, a Plant-Specific Casein Kinase 1, Negatively Regulates Flowering and Phosphorylates Histone H3 In Vitro
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来源:GENES
关键词: Arabidopsis thaliana; casein kinase I; flowering; histone H3; MLK3; phosphorylation
年份:2020
25Genome-wide identification, phylogeny and expression analysis of the SPL gene family and its important role in salt stress in Medicago sativa L.
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来源:BMC PLANT BIOLOGY
关键词: Medicago sativa; SPL gene family; Salt stress; Legume
年份:2022
26Expression of Three Related to ABI3/VP1 Genes in Medicago truncatula Caused Increased Stress Resistance and Branch Increase in Arabidopsis thaliana
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来源:FRONTIERS IN PLANT SCIENCE
关键词: RAV; Medicago truncatula; abiotic stress response; ABA; cold tolerance; branch number increasement
年份:2020
27Genome-Wide Association Analysis Coupled With Transcriptome Analysis Reveals Candidate Genes Related to Salt Stress in Alfalfa (Medicago sativa L.)
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来源:FRONTIERS IN PLANT SCIENCE
关键词: alfalfa; GWAS; salt stress; RNA-seq; auxin
年份:2022
28A Genome-Wide Association Study Coupled With a Transcriptomic Analysis Reveals the Genetic Loci and Candidate Genes Governing the Flowering Time in Alfalfa (Medicago sativa L.)
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来源:FRONTIERS IN PLANT SCIENCE
关键词: alfalfa; GWAS; flowering time; SNP; haplotypes
年份:2022
29Gibberellins Inhibit Flavonoid Biosynthesis and Promote Nitrogen Metabolism in Medicago truncatula
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来源:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
关键词: Medicago truncatula; gibberellin; proteomics; metabolomics; flavonoid biosynthesis; nitrogen metabolism
年份:2021
30iTRAQ-based comparative proteomic analysis of differences in the protein profiles of stems and leaves from two alfalfa genotypes
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来源:BMC PLANT BIOLOGY
关键词: Alfalfa; Proteomics; Stem; Leaf; Lignin synthesis; Photosynthesis
年份:2020