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Development of Low Phytate Rice by RNAi Mediated Seed-Specific Silencing of Inositol 13456-Pentakisphosphate 2-Kinase Gene (IPK1)

机译:RNAi介导的肌醇13456-五磷酸二钾2-激酶基因(IPK1)的种子特异性沉默技术开发低植酸水稻

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摘要

Phytic acid (InsP6) is considered to be the major source of phosphorus and inositol phosphates in most cereal grains. However, InsP6 is not utilized efficiently by monogastric animals due to lack of phytase enzyme. Furthermore, due to its ability to chelate mineral cations, phytic acid is considered to be an antinutrient that renders these minerals unavailable for absorption. In view of these facts, reducing the phytic acid content in cereal grains is a desired goal for the genetic improvement of several crops. In the present study, we report the RNAi-mediated seed-specific silencing (using the Oleosin18 promoter) of the IPK1 gene, which catalyzes the last step of phytic acid biosynthesis in rice. The presence of the transgene cassette in the resulting transgenic plants was confirmed by molecular analysis, indicating the stable integration of the transgene. The subsequent T4 transgenic seeds revealed 3.85-fold down-regulation in IPK1 transcripts, which correlated to a significant reduction in phytate levels and a concomitant increase in the amount of inorganic phosphate (Pi). The low-phytate rice seeds also accumulated 1.8-fold more iron in the endosperm due to the decreased phytic acid levels. No negative effects were observed on seed germination or in any of the agronomic traits examined. The results provide evidence that silencing of IPK1 gene can mediate a substantial reduction in seed phytate levels without hampering the growth and development of transgenic rice plants.
机译:植酸(InsP6)被认为是大多数谷物中磷和肌醇磷酸盐的主要来源。但是,由于缺乏肌醇六磷酸酶,单胃动物无法有效利用InsP6。此外,由于植酸具有螯合矿物质阳离子的能力,因此被认为是一种抗营养物质,使这些矿物质无法吸收。鉴于这些事实,降低谷物中植酸的含量是几种作物遗传改良的理想目标。在本研究中,我们报告了IPK1基因的RNAi介导的种子特异性沉默(使用Oleosin18启动子),该沉默催化水稻植酸生物合成的最后一步。通过分子分析证实了所得转基因植物中转基因盒的存在,表明转基因的稳定整合。随后的T4转基因种子在IPK1转录物中显示出3.85倍的下调,这与肌醇六磷酸水平的显着降低和无机磷酸盐(Pi)的含量增加相关。由于植酸水平降低,低植酸水稻种子在胚乳中的铁含量也增加了1.8倍。没有观察到对种子发芽或任何农艺性状的不利影响。结果提供了证明,IPK1基因的沉默可以介导植酸水平的大幅降低,而不会影响转基因水稻的生长。

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