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Flavonoid Biosynthetic Pathway and Cereal Defence Response: An Emerging Trend in Crop Biotechnoloy

机译:类黄酮生物合成途径和谷类防御反应:作物生物技术的新兴趋势。

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The flavonoid pathway, derived from the phenylpropanoid and acetyl coa and malonyl coa pathways, give rise to a diverse array of compounds such as isoflavonoids, anthocyanins, proanthocyanidins, etc. that are attributed with a multitude of biological functions. There is an increasing evidence on the role of flavonoids in defence response in many plant species though the exact mechanism is yet to be defined unequivocally. On the contrary, there is very little information on the flavonoids in cereal defence response.A novel strategy to improve disease resistance in cereals is by the engineering of the flavonoid pathway for enhancement of specific flavonoids in selected tissue under pathogen attack. Recent development in molecular biology and enhancement of specific flavonoids in selected tissue pathogen attack. Recent developments in molecular biology and genetics of flavonoid pathway in several plants would allow one to test its potential in improving disease resistance. Further, the powerful molecular techniques and reproducible transformation protocols would enable the manipulation of the flavonoid pathway in cereals. Transferring allied pathways, or a part of pathways to target plants seem to be within the reach of many groups. It is. therefore ,time for a second look at this secondary pathway pathway particularly in the context of disease resistance phenomenon.
机译:类黄酮途径衍生自苯基丙烷和乙酰可可脂和丙二酰可可脂途径,产生了多种化合物,例如异黄酮,花色素苷,原花色素等,这些化合物具有多种生物学功能。关于黄酮类化合物在许多植物物种防御反应中的作用的证据越来越多,尽管确切的机制尚未明确定义。相反,关于谷物防御反应中的类黄酮的信息很少。改善谷物抗病性的新策略是通过设计类黄酮途径来增强病原体侵袭下选定组织中的特定类黄酮。分子生物学的最新进展和特定组织病原体侵袭中特定类黄酮的增强。几种植物中类黄酮途径的分子生物学和遗传学的最新发展将使人们能够测试其在提高抗病性方面的潜力。此外,强大的分子技术和可重现的转化方案将使操纵谷物中的类黄酮途径成为可能。将相关途径或部分途径转移至目标植物似乎在许多群体的能力范围之内。它是。因此,有时间重新审视该次要途径,特别是在抗病性现象的背景下。

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