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The dual role of phytoene synthase genes in carotenogenesis in carrot roots and leaves

机译:八氢番茄红素合酶基因在胡萝卜根和叶的胡萝卜素生成中的双重作用

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Carrot (Daucus carota L.) is an important food crop and is useful for studying carotenogenesis due to the quantity and diversity of carotenoids in its roots. Phytoene synthase catalyzes the first committed step in the carotenoid biosynthesis pathway, and its overexpression is the main driving force in the orange phenotype. At present, we lack fundamental knowledge of the role of these genes and their effects on carotenoid accumulation in leaves. In the present study, three backcross inbred lines (BC2S4) with different colored roots derived from a cross between the orange inbred line (Af) and related wild species were used to investigate the role of the duplicated DcPSY genes in root carotenogenesis. Promoter analysis showed that DcPSY genes have diverged substantially in their regulatory sequences after gene duplication. Expression levels of DcPSY1 and DcPSY2 were generally positively correlated with carotenoid content during root development. In mature leaves, total carotenoid content was higher than that in the roots, DcPSY1 expression increased extremely higher than DcPSY2 expression compared with roots, and DcPSY1 was more sensitive than DcPSY2 during leaf de-etiolation under sunlight. These results suggest that DcPSY1 seems to make an important contribution to carotenoid accumulation in the leaves and is important for photosynthesis and photoprotection, but they are not the determining factors of root color. This expands our understanding of the regulation of carotenoid biosynthesis in carrot.
机译:胡萝卜(Daucus carota L.)是重要的粮食作物,由于其根中类胡萝卜素的数量和多样性,可用于研究类胡萝卜素。番茄红素合酶催化类胡萝卜素生物合成途径中的第一个重要步骤,其过表达是橙色表型的主要驱动力。目前,我们缺乏这些基因的作用及其对叶片中类胡萝卜素积累的影响的基础知识。在本研究中,使用三个具有不同颜色根的回交自交系(BC2S4),该回交自交系来自橙色自交系(Af)与相关野生物种之间的杂交,以研究重复的DcPSY基因在根类胡萝卜素形成中的作用。启动子分析表明,基因复制后,DcPSY基因的调控序列发生了很大的差异。 DcPSY1和DcPSY2的表达水平通常与根发育过程中的类胡萝卜素含量呈正相关。在成熟叶片中,总类胡萝卜素含量高于根部,与根部相比,DcPSY1表达增加得比DcPSY2表达高得多,并且在阳光下叶片去黄化过程中,DcPSY1比DcPSY2敏感。这些结果表明,DcPSY1似乎对叶片中的类胡萝卜素积累起重要作用,并且对光合作用和光保护起着重要作用,但它们不是根色的决定因素。这扩大了我们对胡萝卜中类胡萝卜素生物合成调控的理解。

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