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首页> 外文期刊>Plant and Cell Physiology >Regulated Expression of an Isopentenyltransferase Gene (IPT) in Peanut Significantly Improves Drought Tolerance and Increasesn Yield Under Field Conditions
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Regulated Expression of an Isopentenyltransferase Gene (IPT) in Peanut Significantly Improves Drought Tolerance and Increasesn Yield Under Field Conditions

机译:异戊烯基转移酶基因(IPT)在花生中的调控表达显着提高了田间条件下的耐旱性并提高了产量

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Isopentenyltransferase (IPT) is a critical enzyme in the cytokinin biosynthetic pathway. The expression of IPT under the control of a maturation- and stress-induced promoter was shown to delay stress-induced plant senescence that resulted in an enhanced drought tolerance in both monocot and dicot plants. This report extends the earlier findings in tobacco and rice to peanut (Arachis hypogaea L.), an important oil crop and protein source. Regulated expression of IPT in peanut significantly improved drought tolerance in both laboratory and field conditions. Transgenic peanut plants maintained higher photosynthetic rates, higher stomatal conductance and higher transpiration than wild-type control plants under reduced irrigation conditions. More importantly, transgenic peanut plants produced significantly higher yields than wild-type control plants in the field, indicating a great potential for the development of crops with improved performance and yield in water-limited areas of the world.
机译:异戊烯基转移酶(IPT)是细胞分裂素生物合成途径中的关键酶。 IPT在成熟诱导和胁迫诱导启动子的控制下的表达被证明可延缓胁迫诱导的植物衰老,从而导致单子叶植物和双子叶植物的干旱耐受性增强。该报告将烟草和稻米中的早期发现扩展到了花生(Arachis hypogaea L.),花生是一种重要的油料作物和蛋白质来源。在实验室和田间条件下,IPT在花生中的表达调控均可显着提高抗旱性。在减少灌溉条件下,转基因花生植物比野生型对照植物保持更高的光合速率,更高的气孔导度和更高的蒸腾作用。更重要的是,转基因花生植物在田间的产量明显高于野生型对照植物,这表明在世界缺水地区,具有改良的性能和产量的农作物具有巨大的发展潜力。

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