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Provitamin A Biofortification of Durum Wheat through a TILLING Approach

机译:通过耕种方法对硬粒小麦进行生物维他命原强化

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摘要

Macro- and micronutrients, essential for the maintenance of human metabolism, are assimilated daily through the diet. Wheat and other major cereals are a good source of nutrients, such as carbohydrates and proteins, but cannot supply a sufficient amount of essential micronutrients, including provitamin A. As vitamin A deficiency (VAD) leads to several serious diseases throughout the world, the biofortification of a major staple crop, such as wheat, represents an effective way to preserve human health in developing countries. In the present work, a key enzyme involved in the branch of carotenoids pathway producing β-carotene, lycopene epsilon cyclase, has been targeted by a Targeting Induced Local Lesions in Genomes (TILLING) approach in a “block strategy” perspective. The null mutant genotype showed a strong reduction in the expression of the gene and also interesting pleiotropic effects on an enzyme (β-ring hydroxylase) acting downstream in the pathway. Biochemical profiling of carotenoids in the wheat mutant lines showed an increase of roughly 75% in β-carotene in the grains of the complete mutant line compared with the control. In conclusion, we describe here the production and characterization of a new wheat line biofortified with provitamin A obtained through a nontransgenic approach, which also sheds new light on the molecular mechanism governing carotenoid biosynthesis in durum wheat.
机译:维持人体新陈代谢必不可少的大量和微量营养素,每天都通过饮食吸收。小麦和其他主要谷物是碳水化合物和蛋白质等营养素的良好来源,但无法提供足够的必需微量营养素,包括维生素原A。由于维生素A缺乏症(VAD)导致世界范围内的几种严重疾病,生物强化诸如小麦之类的主要主粮作物是维持发展中国家人类健康的有效途径。在目前的工作中,靶向性基因组中局部诱导病变(TILLING)的目标是“阻断策略”,该方法涉及产生β-胡萝卜素的类胡萝卜素途径分支中的关键酶番茄红素ε环化酶。无效的突变基因型显示了该基因表达的强烈降低,并且还对该途径下游的酶(β-环羟化酶)产生了有趣的多效作用。小麦突变体品系中类胡萝卜素的生化分析显示,与对照品相比,完整突变体品系中的β-胡萝卜素增加了约75%。总之,我们在这里描述了通过非转基因方法获得的用原维生素A生物强化的新小麦品系的生产和特性,这也为控制硬粒小麦中类胡萝卜素生物合成的分子机制提供了新的思路。

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