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PUBMED FOR HANDHELDS

Journal Abstract Search


154 related items for PubMed ID: 36438143

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  • 7. Overexpressing the NAC transcription factor LpNAC13 from Lilium pumilum in tobacco negatively regulates the drought response and positively regulates the salt response.
    Wang Y, Cao S, Guan C, Kong X, Wang Y, Cui Y, Liu B, Zhou Y, Zhang Y.
    Plant Physiol Biochem; 2020 Apr; 149():96-110. PubMed ID: 32058898
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  • 9. Transcriptome Analysis of Carbohydrate Metabolism Genes and Molecular Regulation of Sucrose Transport Gene LoSUT on the Flowering Process of Developing Oriental Hybrid Lily 'Sorbonne' Bulb.
    Gu J, Zeng Z, Wang Y, Lyu Y.
    Int J Mol Sci; 2020 Apr 27; 21(9):. PubMed ID: 32349427
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  • 11. Identification and Expression Analysis of Putative Sugar Transporter Gene Family during Bulb Formation in Lilies.
    Huang Z, Gao C, Xu Y, Liu J, Kang J, Ren Z, Cui Q, Li D, Ma S, Xia Y, Wu Y.
    Int J Mol Sci; 2024 Mar 20; 25(6):. PubMed ID: 38542476
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  • 12. The gene LpBCP increased NaHCO3 resistance by enhancing lignin or ROS scavenging in the Nicotiana benthamiana.
    Jin S, Wang X, Dong Y, Li G, Chang X, Zhang L, Jin S.
    Plant Biol (Stuttg); 2022 Oct 20; 24(6):1057-1065. PubMed ID: 35976073
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  • 17. Comparative transcriptome analysis reveals heat stress-responsive genes and their signalling pathways in lilies (Lilium longiflorum vs. Lilium distichum).
    Fu Y, Yang L, Gao H, Wenji X, Li Q, Li H, Gao J.
    PLoS One; 2020 Oct 20; 15(10):e0239605. PubMed ID: 33006971
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  • 20. The proof is in the bulb: glycerol influences key stages of lily development.
    Lazare S, Bechar D, Fernie AR, Brotman Y, Zaccai M.
    Plant J; 2019 Jan 20; 97(2):321-340. PubMed ID: 30288818
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