科研产出
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1Genome-wide association analysis of forage quality in maize mature stalk
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来源:BMC PLANT BIOLOGY
关键词: Genome-wide association Maize Forage quality Digestibility
年份:2016
2Genetic analysis and QTL mapping of stalk cell wall components and digestibility in maize recombinant inbred lines from B73 x By804
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来源:CROP JOURNAL
关键词: Maize; QTL; Cell wall; Digestibility; Recombinant inbred lines
年份:2020
3Improving Genomic Selection With Quantitative Trait Loci and Nonadditive Effects Revealed by Empirical Evidence in Maize
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来源:FRONTIERS IN PLANT SCIENCE
关键词: maize; genomic selection; association and linkage mapping; trait-relevant marker; nonadditive effect; population structure
年份:2019
4Genome-Wide Association Study Reveals the Genetic Basis of Stalk Cell Wall Components in Maize
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来源:PLOS ONE
年份:2016
5QTL analysis of ear leaf traits in maize (Zea mays L.) under different planting densities
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来源:CROP JOURNAL
关键词: Maize Quantitative trait loci Leaf traits Density treatment
年份:2017
6Genetic and Quantitative Trait Locus Analysis of Cell Wall Components and Forage Digestibility in the Zheng58 x HD568 Maize RIL Population at Anthesis Stage
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来源:FRONTIERS IN PLANT SCIENCE
关键词: QTL maize cell wall lignin digestibility
年份:2017
7Genome-wide proteomic profiling reveals the role of dominance protein expression in heterosis in immature maize ears
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来源:SCIENTIFIC REPORTS
年份:2017
8Transcriptome profiling and comparison of maize ear heterosis during the spikelet and floret differentiation stages
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来源:BMC GENOMICS
关键词: Maize (Zea mays L.) Ear development Heterosis Transcriptomics Additive gene expression Allele-specific expression cis- and trans-regulation
年份:2016
9Genome-wide alternative splicing variation and its potential contribution to maize immature-ear heterosis
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来源:CROP JOURNAL
关键词: Maize; Heterosis; Dominant alternative splicing; Cis-regulation
年份:2021
10Identifying quantitative trait loci for the general combining ability of yield-relevant traits in maize
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来源:BREEDING SCIENCE
关键词: general combining ability; linkage mapping; maize; quantitative trait locus
年份:2021