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Journal Abstract Search


237 related items for PubMed ID: 34425064

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  • 6. Transcriptomic and Metabolic Profiling Reveals a Lignin Metabolism Network Involved in Mesocotyl Elongation during Maize Seed Germination.
    Zhao X, Niu Y, Bai X, Mao T.
    Plants (Basel); 2022 Apr 11; 11(8):. PubMed ID: 35448762
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  • 7. Integrated QTL Mapping, Meta-Analysis, and RNA-Sequencing Reveal Candidate Genes for Maize Deep-Sowing Tolerance.
    Zhao X, Niu Y, Hossain Z, Shi J, Mao T, Bai X.
    Int J Mol Sci; 2023 Apr 05; 24(7):. PubMed ID: 37047743
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  • 9. Physiological Parameters and Transcriptomic Levels Reveal the Response Mechanism of Maize to Deep Sowing and the Mechanism of Exogenous MeJA to Alleviate Deep Sowing Stress.
    Wang F, Feng Z, Yang X, Zhou G, Peng Y.
    Int J Mol Sci; 2024 Oct 05; 25(19):. PubMed ID: 39409045
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  • 12. Interactions between Brassinosteroids and Strigolactones in Alleviating Salt Stress in Maize.
    Wang X, Qi X, Zhuang Z, Bian J, Li J, Chen J, Li Z, Peng Y.
    Int J Mol Sci; 2024 Sep 29; 25(19):. PubMed ID: 39408841
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  • 15. New insights into light spectral quality inhibits the plasticity elongation of maize mesocotyl and coleoptile during seed germination.
    Zhao X, Niu Y, Hossain Z, Zhao B, Bai X, Mao T.
    Front Plant Sci; 2023 Sep 29; 14():1152399. PubMed ID: 37008499
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  • 19. Identification of hub genes involved in gibberellin-regulated elongation of coleoptiles of rice seeds germinating under submerged conditions.
    Hu Y, Ma M, Zhao W, Niu P, Li R, Luo J.
    J Exp Bot; 2024 Jul 10; 75(13):3862-3876. PubMed ID: 38571323
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