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Improving protein content and quality by over-expressing artificially synthetic fusion proteins with high lysine and threonine constituent in rice plants

机译:通过在水稻植物中过表达具有高赖氨酸和苏氨酸成分的人工合成融合蛋白来提高蛋白质含量和质量

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摘要

Rice grains are rich in starch but low in protein with very low level of both lysine and threonine. Thus, it is important to further improve protein quality and quantity, especially to increase lysine and threonine content in rice grains. We artificially synthesized two new genes by fusing endogenous rice genes with lysine (K)/threonine (T) motif (TKTKK) coding sequences. They were designated as TKTKK1 and TKTKK2 and their encoded proteins consist of 73.1% and 83.5% of lysine/threonine, respectively. These two genes were under the control of 35S promoter and were independently introduced into the rice genome to generate transgenic plants. Our data showed that overexpression of TKTKK1 generated stable proteins with expected molecular weight and the transgenic rice seeds significantly increased lysine, threonine, total amino acids and crude protein content by 33.87%, 21.21%, 19.43% and 20.45%, respectively when compared with wild type control; significant improvement was also observed in transgenic rice seeds overexpressing TKTKK2. However, limited improvement in protein quality and quantity was observed in transgenic seeds carrying tandom array of these two new genes. Our data provide the basis and alternative strategy on further improving protein quality and quantity in other crops or vegetable plants by synthetic biology.
机译:水稻籽粒富含淀粉,但蛋白质含量较低,赖氨酸和苏氨酸含量都很低。因此,重要的是进一步提高蛋白质的质量和数量,特别是增加稻米中赖氨酸和苏氨酸的含量。我们通过将内源水稻基因与赖氨酸(K)/苏氨酸(T)基序(TKTKK)编码序列融合,人工合成了两个新基因。它们分别被命名为TKTKK1和TKTKK2,它们的编码蛋白分别由赖氨酸/苏氨酸的73.1%和83.5%组成。这两个基因在35S启动子的控制下,被独立地引入水稻基因组以产生转基因植物。我们的数据显示,TKTKK1的过表达产生了具有预期分子量的稳定蛋白,而转基因水稻种子与野生稻相比,显着增加了赖氨酸,苏氨酸,总氨基酸和粗蛋白含量,分别增加了33.87%,21.21%,19.43%和20.45%。类型控制;在过表达TKTKK2的转基因水稻种子中也观察到显着改善。然而,在携带这两个新基因的连续阵列的转基因种子中观察到蛋白质质量和数量的有限改善。我们的数据为通过合成生物学进一步改善其他农作物或蔬菜植物的蛋白质质量和数量提供了基础和替代策略。

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