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    文利超, 吴凤燕, 李伟, 郭永峰. 烟叶衰老过程中类胡萝卜素代谢及相关基因表达分析[J]. 中国烟草科学, 2019, 40(4): 62-68. DOI: 10.13496/j.issn.1007-5119.2019.04.010
    引用本文: 文利超, 吴凤燕, 李伟, 郭永峰. 烟叶衰老过程中类胡萝卜素代谢及相关基因表达分析[J]. 中国烟草科学, 2019, 40(4): 62-68. DOI: 10.13496/j.issn.1007-5119.2019.04.010
    WEN Lichao, WU Fengyan, LI Wei, GUO Yongfeng. Analysis of Carotenoid Metabolism and Related Gene Expressions during Senescence of Tobacco Leaves[J]. CHINESE TOBACCO SCIENCE, 2019, 40(4): 62-68. DOI: 10.13496/j.issn.1007-5119.2019.04.010
    Citation: WEN Lichao, WU Fengyan, LI Wei, GUO Yongfeng. Analysis of Carotenoid Metabolism and Related Gene Expressions during Senescence of Tobacco Leaves[J]. CHINESE TOBACCO SCIENCE, 2019, 40(4): 62-68. DOI: 10.13496/j.issn.1007-5119.2019.04.010

    烟叶衰老过程中类胡萝卜素代谢及相关基因表达分析

    Analysis of Carotenoid Metabolism and Related Gene Expressions during Senescence of Tobacco Leaves

    • 摘要: 成熟叶片中类胡萝卜素含量与烟叶品质密切相关。为探究烟草叶片衰老过程中类胡萝卜素组分变化及代谢相关基因表达情况,本研究以普通烟草红花大金元为材料,采用液相色谱法测定不同发育时期烟叶中新黄质、叶黄质和β-胡萝卜素的含量;通过转录组数据分析结合实时荧光定量PCR(qRT-PCR)方法,分析烟草叶片衰老成熟过程中类胡萝卜素代谢相关基因的表达变化。结果显示,烟草进入成熟衰老期叶片中新黄质、叶黄质、β-胡萝卜素含量逐渐降低;类胡萝卜素合成基因GGPS、PSY、PDS、ZDS、CRTISO、LYCBLYCE呈现下调表达,类胡萝卜素降解基因LOX、PODCCD1呈现上调表达,PALPPO呈现下调表达。类胡萝卜素转化基因ZEP、NXS、NCED呈上调表达。类胡萝卜素合成相关转录因子基因ORANGE、HY5、COP1、DET1呈现下调表达,而MYB5b、Cry-2呈现上调表达。随着烟叶成熟衰老,类胡萝卜素合成减弱,而降解增强。研究结果为烟叶成熟衰老过程中类胡萝卜素代谢的分子调控及针对类胡萝卜素含量定向改良烟草品种奠定了基础。

       

      Abstract: Carotenoid content in mature leaves is important for tobacco quality. In order to explore the changes of carotenoid components and related gene expression during tobacco leaf senescence, the contents of neoxanthin, lutein and β-carotene in the middle leaves of Honghuadajinyuan were analyzed in leaves from different developmental stages using liquid chromatography. Meanwhile, the expression of genes related to carotenoid metabolism was analyzed based on transcriptome data and quantitative real-time PCR verification. The results showed that the contents of neoxanthin, lutein, and β-carotene in tobacco leaves gradually decreased during tobacco leaf senescence and the carotenoid synthesis genes GGPS, PSY, PDS, ZDS, CRTISO, LYCB and LYCE were down-regulated. The carotenoid-degrading genes LOX, POD and CCD1 were up-regulated and PAL and PPO were down-regulated. The carotenoid converting genes ZEP, NXS and NCED were up-regulated. The transcription factors involved in the carotenoid synthesis process ORANGE, HY5, COP1 and DET1 were down-regulated, while MYB5b and Cry-2 were up-regulated. The results showed that, with the aging of tobacco leaves, the synthesis of carotenoids decreased and the degradation increased. The results from this study will facilitate in depth understanding of the molecular regulation of carotenoid metabolism during the maturation and senescence of tobacco leaves and promote genetic improvement of tobacco varieties targeting carotenoid content.

       

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