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Effects of proteome rebalancing and sulfur nutrition on the accumulation of methionine rich δ-zein in transgenic soybeans

机译:蛋白质组平衡和硫营养对转基因大豆中富甲硫氨酸δ-玉米醇溶蛋白积累的影响

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摘要

Expression of heterologous methionine-rich proteins to increase the overall sulfur amino acid content of soybean seeds has been only marginally successful, presumably due to low accumulation of transgenes in soybeans or due to gene silencing. Proteome rebalancing of seed proteins has been shown to promote the accumulation of foreign proteins. In this study, we have utilized RNAi technology to suppress the expression of the β-conglycinin, the abundant 7S seed storage proteins of soybean. Western blot and 2D-gel analysis revealed that β-conglycinin knockdown line (SAM) failed to accumulate the α′, α, and β-subunits of β-conglycinin. The proteome rebalanced SAM retained the overall protein and oil content similar to that of wild-type soybean. We also generated transgenic soybean lines expressing methionine-rich 11 kDa δ-zein under the control of either the glycinin or β-conglycinin promoter. The introgression of the 11 kDa δ-zein into β-conglycinin knockdown line did not enhance the accumulation of the 11 kDa δ-zein. However, when the same plants were grown in sulfur-rich medium, we observed 3- to 16-fold increased accumulation of the 11 kDa δ-zein. Transmission electron microscopy observation revealed that seeds grown in sulfur-rich medium contained numerous endoplasmic reticulum derived protein bodies. Our findings suggest that sulfur availability, not proteome rebalancing, is needed for high-level accumulation of heterologous methionine-rich proteins in soybean seeds.
机译:表达异源的富含蛋氨酸的蛋白质以增加大豆种子的总硫氨基酸含量仅取得了微弱的成功,这大概是由于大豆中转基因的低积累或基因沉默所致。种子蛋白质的蛋白质组重新平衡已显示出可促进外源蛋白质的积累。在这项研究中,我们利用RNAi技术来抑制大豆中丰富的7S种子贮藏蛋白β-伴大豆球蛋白的表达。蛋白质印迹和2D凝胶分析表明,β-伴大豆球蛋白敲低系(SAM)未能积聚β-伴大豆球蛋白的α',α和β亚基。蛋白质组重新平衡的SAM保留了与野生型大豆相似的总蛋白质和油含量。我们还生成了在大豆球蛋白或β-伴大豆球蛋白启动子控制下表达富含蛋氨酸的11 kDaδ-玉米醇溶蛋白的转基因大豆品系。 11 kDaδ-玉米醇溶蛋白渗入β-伴大豆球蛋白敲低株系并没有增强11 kDaδ-玉米醇溶蛋白的积累。但是,当相同的植物在富硫培养基中生长时,我们观察到11 kDaδ-玉米醇溶蛋白的积累增加了3到16倍。透射电子显微镜观察表明,在富含硫的培养基中生长的种子包含许多内质网衍生的蛋白质体。我们的发现表明,大豆种子中高水平积累异源蛋氨酸丰富的蛋白质需要硫的有效性而不是蛋白质组的重新平衡。

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