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首页> 外文期刊>Biological Procedures Online >Manipulating osa-MIR156f Expression by D18 Promoter to Regulate Plant Architecture and Yield Traits both in Seasonal and Ratooning Rice
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Manipulating osa-MIR156f Expression by D18 Promoter to Regulate Plant Architecture and Yield Traits both in Seasonal and Ratooning Rice

机译:通过D18启动子操纵OSA-MIR156F表达,以调节季节性和衡量米的植物建筑和产量性状

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Background:Rice (Oryza sativa L.) feeds more than half of the world's population. Ratooning rice is an economical alternative to the second seasonal rice, thus increasing the yield of ratooning rice is highly important.Results:Here we report an applicable transgenic line constructed through the manipulation of osa-MIR156f expression in rice shoot using the OsGA3ox2 (D18) promoter. In seasonal rice, the D18-11 transgenic line showed moderate height and more effective tillers with normal panicle. In ratooning rice, axillary buds outgrew from the basal node of the D18-11 transgenic line before the harvest of seasonal rice. More effective tillers produced by the outgrowth of axillary buds contributed to the plant architecture improvement and yield increase. Additionally, it was found that osa-miR156f down-regulated the expression of tillering regulators, such as TEOSINTE BRANCHED1 (TB1) and LAX PANICLE 1 (LAX1). The expression of DWARF10, DWARF27 and DWARF53, three genes being involved in the biosynthesis and signaling of strigolactone (SL), decreased in the stem of the D18-11 transgenic line.Conclusion:Our results indicated that the manipulation of osa-MIR156f expression may have application significance in rice genetic breeding. This study developed a novel strategy to regulate plant architecture and grain yield potential both in the seasonal and ratooning rice.? The Author(s). 2019.
机译:背景:米饭(Oryza Sativa L.)喂养世界上一半以上的人口。 Ratooning Rice是对第二季节性稻米的经济替代品,从而提高了稻米的产量非常重要。结果:在这里,我们通过OSGA3Ox2(D18)通过在水稻芽中操纵OSA-MiR156F表达来报告一种适用的转基因系。(D18)启动子。在季节性水稻中,D18-11转基因线显示出中等高度和更有效的分蘖,具有正常穗。在季节性水稻收获之前,在输出大米,从D18-11转基因线的基础节点过度造血。由腋芽的生长产生的更有效的分蘖导致植物架构改善和产量增加。另外,发现OSA-MIR156F下调分蘖调节剂的表达,例如Teosinte分支1(TB1)和LAX穗1(LAX1)。 Dwarf10,dwarf27和dwarf53的表达,三种基因参与杂物酮(S1)的生物合成和信号传导,在D18-11转基因系的茎中降低。结论:我们的结果表明,OSA-miR156F表达的操纵可能水稻遗传育种中具有应用意义。本研究开发了一种新颖的战略,以调节季节性和重杆米的植物建筑和粮食产量潜力。作者。 2019年。

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