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Biofortification of rice with the essential amino acid lysine: molecular characterization, nutritional evaluation, and field performance

机译:用必需氨基酸赖氨酸对水稻进行生物强化:分子表征,营养评估和田间表现

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Marker-free transgenic rice that over-accumulates the essential amino acid lysine has been generated by combining lines with endosperm-specific and constitutive engineering of lysine, and has been evaluated in the field.Rice (Oryza sativa L.), a major staple crop worldwide, has limited levels of the essential amino acid lysine. We previously produced engineered rice with increased lysine content by expressing bacterial aspartate kinase and dihydrodipicolinate synthase and inhibiting rice lysine ketoglutarate reductase/saccharopine dehydrogenase activity. However, the grain quality, field performance, and integration patterns of the transgenes in these lysine-enriched lines remain unclear. In the present study, we selected several elite transgenic lines with endosperm-specific or constitutive regulation of the above key enzymes but lacking the selectable marker gene. All target transgenes were integrated into the intragenic region in the rice genome. Two pyramid transgenic lines (High Free Lysine; HFL1 and HFL2) with free lysine levels in seeds up to 25-fold that of wild type were obtained via a combination of the above two transgenic events. We observed a dramatic increase in total free amino acids and a slight increase in total protein content in both pyramid lines. Moreover, the general physicochemical properties were improved in pyramid transgenic rice, but the starch composition was not affected. Field trials indicated that the growth of HFL transgenic rice was normal, except for a slight difference in plant height and grain colour. Taken together, these findings will be useful for the potential commercialization of high-lysine transgenic rice.
机译:通过将品系与胚乳特异的赖氨酸组成型工程结合而产生了无标记的,过量积累必需氨基酸赖氨酸的转基因水稻,并已在田间进行了评估。水稻(Oryza sativa L.)是一种主要的主要农作物在世界范围内,必需氨基酸赖氨酸水平有限。我们以前通过表达细菌天冬氨酸激酶和二氢二吡啶甲酸酯合酶并抑制水稻赖氨酸酮戊二酸还原酶/糖碱脱氢酶活性来生产具有较高赖氨酸含量的工程水稻。然而,这些赖氨酸富集的品系的谷物质量,田间表现和转基因的整合模式仍不清楚。在本研究中,我们选择了具有上述胚芽酶的胚乳特异性或组成型调控但缺乏选择标记基因的几种优良转基因品系。所有靶转基因都整合到水稻基因组的基因内区中。通过上述两个转基因事件的组合,获得了种子中的赖氨酸水平高达野生型的25倍的两个金字塔转基因品系(高游离赖氨酸; HFL1和HFL2)。我们观察到两个金字塔品系中的总游离氨基酸急剧增加,总蛋白质含量略有增加。此外,金字塔型转基因水稻的一般理化特性得到改善,但淀粉组成没有受到影响。田间试验表明,HFL转基因水稻的生长正常,除了株高和籽粒颜色略有不同。综上所述,这些发现将对高赖氨酸转基因水稻的潜在商业化有用。

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