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Saffron: Its Phytochemistry, Developmental Processes, and Biotechnological Prospects

机译:番红花:其植物化学,发展过程和生物技术前景

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The present state of knowledge concerning developmental processes and the secondary metabolism of saffron, Crocus sativus L. (Iridaceae), along with the genes involved in these processes so far known, is reviewed. Flowers and corms constitute the most valuable parts of saffron. Corm and flower development are two key aspects to be studied in saffron to increase the yield and quality of the spice, to raise its reproductive rate, and to implement new production systems. Important knowledge about the physiology of flowering and vegetative growth has been acquired in recent years, but there is still only limited information on molecular mechanisms controlling these processes. Although some genes involved in flower formation and meristem transition in other species have been isolated in saffron, the role of these genes in this species awaits further progress. Also, genes related with the synthesis pathway of abscisic acid and strigolactones, growth regulators related with bud endodormancy and apical dominance (paradormancy), have been isolated. However, the in-depth understanding of these processes as well as of corm development is far from being achieved. By contrast, saffron phytochemicals have been widely studied. The different flower tissues and the corm have been proved to be an important source of phytochemicals with pharmacological properties. The biotechnological prospects for saffron are here reviewed on the basis of the discovery of the enzymes involved in key aspects of saffron secondary metabolism, and we also analyze the possibility of transferring current knowledge about flowering and vegetative propagation in model species to the Crocus genus.
机译:综述了关于番红花,番红豆苜蓿(Iridaceae)的发育过程和次蛋白酶次生代谢的知识状态以及参与这些过程的基因,迄今为止已知的这些过程。鲜花和鸬鹚构成了藏红花最有价值的部分。蜗牛和花卉开发是藏红花中研究的两个关键方面,以提高香料的产量和质量,提高其生殖率,并实施新的生产系统。近年来收购了关于开花和营养增长生理生理学的重要知识,但仍有关于控制这些过程的分子机制的有限信息。虽然在其他物种中涉及花卉形成和营销转变的一些基因已被藏红花中分离,但这些基因在本物种中的作用等待进一步进展。此外,已经分离出与脱落酸和胞嘧啶的合成途径有关的基因,与芽肺和芽胸腺和顶端优势(ParAdmancy)有关的生长调节剂。然而,对这些过程以及肠系发展的深入理解远未实现。相比之下,番红花植物化学物质已被广泛研究。已被证明是不同的花组织和肝脏是具有药理学特性的重要植物化学源。藏红花的生物技术前景是根据番红花二级代谢的关键方面的发现的发现的基础上审查了酶,我们还分析了在模型物种中转移了关于开花和植物繁殖的可能性对番红花属的可能性。

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