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Rice endosperm iron biofortification by targeted and synergistic action of nicotianamine synthase and ferritin

机译:烟碱胺合酶和铁蛋白的靶向和协同作用对稻胚乳铁的生物强化作用

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Nearly one?¢????third of the world's population, mostly women and children, suffer from iron malnutrition and its consequences, such as anaemia or impaired mental development. Iron fortification of food is difficult because soluble iron is either unstable or unpalatable, and non?¢????soluble iron is not bioavailable. Genetic engineering of crop plants to increase iron content has therefore emerged as an alternative for iron biofortification. To date, strategies to increase iron content have relied on single genes, with limited success. Our work focuses on rice as a model plant, because it feeds one?¢????half of the world's population, including the majority of the iron?¢????malnourished population. Using the targeted expression of two transgenes, nicotianamine synthase and ferritin, we increased the iron content of rice endosperm by more than six?¢????fold. Analysis of transgenic rice lines confirmed that, in combination, they provide a synergistic effect on iron uptake and storage. Laser ablation?¢????inductively coupled plasma?¢????mass spectrometry showed that the iron in the endosperm of the transgenic rice lines accumulated in spots, most probably as a consequence of spatially restricted ferritin accumulation. Agronomic evaluation of the high?¢????iron rice lines did not reveal a yield penalty or significant changes in trait characters, except for a tendency to earlier flowering. Overall, we have demonstrated that rice can be engineered with a small number of genes to achieve iron biofortification at a dietary significant level.
机译:世界上将近三分之一的人口,主要是妇女和儿童,患有铁营养不良及其后果,例如贫血或精神发育障碍。食品中铁的强化很困难,因为可溶性铁不稳定或难吃,并且非可溶性铁无法生物利用。因此,已经出现了对作物植物进行基因工程以提高铁含量的方法,作为铁生物强化的替代方法。迄今为止,增加铁含量的策略依赖于单个基因,但成功有限。我们的工作重点是水稻作为典范植物,因为它养活了世界一半的人口,其中包括大部分铁营养不良的人口。使用烟碱胺合酶和铁蛋白这两种转基因的靶向表达,我们将稻胚乳的铁含量提高了六倍以上。转基因水稻品系的分析证实,它们结合在一起,对铁的吸收和储存具有协同作用。激光消融-电感耦合等离子体质谱法表明,转基因水稻品系的胚乳中的铁聚集在斑点上,这很可能是由于空间受限的铁蛋白积累所致。除有较早开花的趋势外,对高铁水稻品系的农艺学评价没有显示出产量损失或性状特征的显着变化。总的来说,我们已经证明可以用少量基因改造水稻,从而在饮食上达到很高的铁生物强化水平。

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