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Increase in transcript accumulation of Psy1 and e-Lcy genes in grain development is associated with differences in seed carotenoid content between durum wheat and tritordeum

机译:籽粒发育过程中Psy1和e-Lcy基因转录本积累的增加与硬粒小麦和三角麦之间种子类胡萝卜素含量的差异有关

摘要

Carotenoid rich diets have been associated with lower risk of certain diseases. The great importance of cereals in human diet has directed breeding programs towards carotenoid enhancement to alleviate these deficiencies in developing countries and to offer new functional foods in the developed ones. The new cereal tritordeum (×Tritordeum Ascherson et Graebener) derived from durum wheat (Triticum turgidum ssp. durum) and the wild barley Hordeum chilense, naturally presents carotenoid levels 5-8 times higher than those of durum wheat. The improvement of tritordeum properties as a new functional food requires the elucidation of biosynthetic steps for carotenoid accumulation in seeds that differ from durum wheat. In this work expression patterns of nine genes from the isoprenoid and carotenoid biosynthetic pathways were monitored during grain development in durum wheat and tritordeum. Additionally, a fine identification and quantification of pigments (chlorophylls and carotenoids) during grain development and in mature seeds has been addressed. Transcript levels of Psy1, Psy2, Zds, e-Lcy and b-Lcy were found to correlate to carotenoid content in mature grains. The specific activation of the homeologous genes Psy1, e-Lcy from H. chilense and the high lutein esterification found in tritordeum may serve to explain the differences with durum wheat in carotenoid accumulation. © 2013 Springer Science+Business Media Dordrecht.
机译:富含类胡萝卜素的饮食与降低某些疾病的风险有关。谷物在人类饮食中的高度重要性已将育种计划引导至增强类胡萝卜素,以减轻发展中国家的这些不足并为发达国家提供新的功能食品。源自硬粒小麦(Triticum turgidum ssp。durum)和野生大麦大麦(Hordeum chilense)的新谷物三聚体(×Tritordeum Ascherson et Graebener)自然呈现出比硬质小麦高5-8倍的类胡萝卜素水平。作为一种新型功能性食品,改善三角麦的特性需要阐明生物合成步骤,以使类胡萝卜素积累在不同于硬粒小麦的种子中。在这项工作中,在硬粒小麦和三角麦的籽粒发育过程中监测了来自类异戊二烯和类胡萝卜素生物合成途径的九个基因的表达模式。此外,已经解决了在谷物发育过程中和成熟种子中对色素(叶绿素和类胡萝卜素)进行精细鉴定和定量的问题。发现Psy1,Psy2,Zds,e-Lcy和b-Lcy的转录水平与成熟谷物中的类胡萝卜素含量相关。 H. chilense同源基因Psy1,e-Lcy的特异激活和在三聚体中发现的高叶黄素酯化作用可能解释了硬粒小麦与硬粒小麦积累的差异。 ©2013 Springer Science +商业媒体多德雷赫特。

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