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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Different colored Chrysanthemum × morifolium cultivars represent distinct plastid transformation and carotenoid deposit patterns
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Different colored Chrysanthemum × morifolium cultivars represent distinct plastid transformation and carotenoid deposit patterns

机译:不同颜色的菊花×Morifolium品种代表明显的塑性转化和类胡萝卜素沉积物图案

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Carotenoids are the most important pigments determining the color of C. × morifolium; however, it is still unknown whether the changes of plastid ultrastructure affect carotenoids accumulation. In this study, we compared the change of carotenoid composition, content, and the plastid ultrastructures in the different developmental stages of capitulum among fourteen C. × morifolium cultivars from seven color groups. We found that the carotenoids and plastids detected at the early stage of capitulum development were similar in all cultivars, including violaxanthin, lutein, and β-carotene, which were present in proplastids and immature chloroplasts. Immature chloroplasts were degraded completely, forming loosely broken plastids during the development of the capitulum in white and pink cultivars.Meanwhile, a number of lipid vesicles appeared at proplastids, which resulted in only trace amounts of carotenoid accumulation in these cultivars. For yellow, orange, red, and brown cultivars, a great number of chromoplasts were found, which contained diverse ultrastructures, such as plastoglobules, tubules, and lipid droplets; these chromoplasts were derived from proplastids or chloroplasts. Compared with the early stage of capitulum development, these cultivars accumulated large amounts of carotenoids, primarily including lutein, lutein derivatives, and their isomers. In green cultivars, proplastids and immature chloroplasts were completely transformed into mature chloroplasts. These chloroplasts mainly contained violaxanthin, lutein, β-carotene, and two new components, (9Z)-lutein and (9'Z)-lutein, compared with carotenoid components presented in proplastids and immature chloroplasts. This research will be helpful for understanding the mechanisms of carotenoid metabolism of C. × morifolium. Furthermore, we found that two different chromoplast transformation patterns could be present in the same tissue cell, which contributed to the research on plastid differentiation and d
机译:类胡萝卜素是确定C.×Morifolium颜色的最重要颜料;然而,仍然是塑性超微结构的变化是否会影响类胡萝卜素积累。在这项研究中,我们与七个颜色组中的第四个C.×MoriFolium品种中不同发育阶段的类胡萝卜素组成,含量和塑性超微结构的变化进行了比较。我们发现在Capitulum发育早期检测到的类胡萝卜素和体层在所有品种中都相似,包括紫杉蛋白,叶黄素和β-胡萝卜素,其存在于血管基和未成熟的叶绿体中。不成熟的叶绿体完全降解,在白色和粉红色品种的毛细胞箱的发育过程中形成松散破碎的体积。偶像,在血管基体上出现了许多脂质囊泡,这仅导致这些品种中的痕量类胡萝卜素积累。对于黄色,橙色,红色和棕色品种,发现了大量的染色体,其中包含不同的超微结构,例如塑料流囊,小管和脂液滴;这些染色体衍生自血管体或叶绿体。与Capitulum发育的早期相比,这些品种积累了大量的类胡萝卜素,主要包括叶黄素,叶黄素衍生物及其异构体。在绿色品种中,将血管和未成熟的叶绿体完全转化为成熟的叶绿体。这些叶绿体主要含有Violaxanthin,叶黄素,β-胡萝卜素和两种新的组分,(9Z)-Lutein和(9'Z)-Lutein,与在血管基体和未成熟的叶绿体中呈现的类胡萝卜素组分相比。该研究将有助于理解C.×MoriFolium的类胡萝卜素代谢机制。此外,我们发现两种不同的染色体转化模式可以存在于相同的组织细胞中,这有助于对塑性分化和D的研究有助于

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