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Extension of oil biosynthesis during the mid-phase of seed development enhances oil content in Arabidopsis seeds

机译:种子发育中期的油脂合成延长增强拟南芥种子的油含量

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Regulation of oil biosynthesis in plant seeds has been extensively studied, and biotechnological approaches have been designed to increase seed oil content. Oil and protein synthesis is negatively correlated in seeds, but the mechanisms controlling interactions between these two pathways are unknown. Here, we identify the molecular mechanism controlling oil and protein content in seeds. We utilized transgenic Arabidopsis thaliana plants overexpressing WRINKLED1 (WRI1), a master transcription factor regulating seed oil biosynthesis, and knockout mutants of major seed storage proteins. Oil and protein biosynthesis in wild-type plants was sequentially activated during early and late seed development, respectively. The negative correlation between oil and protein contents in seeds arises from competition between the pathways. Extension of WRI1 expression during mid-phase of seed development significantly enhanced seed oil content. This study demonstrates that temporal activation of genes involved in oil or storage protein biosynthesis determines the oil/protein ratio in Arabidopsis seeds. These results provide novel insights into potential breeding strategies to generate crops with high oil contents in seeds.
机译:广泛研究了植物种子中油脂合成的调节,并且设计了生物技术方法以增加种子油含量。油和蛋白质合成在种子中具有负相关,但控制这两个途径之间的相互作用的机制是未知的。在这里,我们鉴定了种子中的含油和蛋白质含量的分子机制。我们利用过表达皱纹1(WRI1)的转基因拟南芥植物,母体转录因子调节种子油生物合成,以及主要种子储存蛋白的敲除突变体。在早期和晚期种子发育过程中依次激活野生型植物中的油和蛋白质生物合成。种子中油和蛋白质含量的负相关来自途径之间的竞争。种子发展中阶段WRI1表达的延伸显着增强了种子油含量。该研究表明,涉及油或储存蛋白生物合成中的基因的时间激活决定了拟南芥种子中的油/蛋白质。这些结果为潜在的育种策略提供了新的洞察力,以产生种子中具有高油含量的作物。

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