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The Arabidopsis transcriptional regulator DPB3-1 enhances heat stress tolerance without growth retardation in rice

机译:Arabidopsis转录调节剂DPB3-1增强了无稻米生长迟缓的热应激耐受性

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The enhancement of heat stress tolerance in crops is an important challenge for food security to facilitate adaptation to global warming. In Arabidopsis thaliana, the transcriptional regulator DNA polymerase II subunit B3-1 (DPB3-1)/nuclear factor Y subunit C10 (NF-YC10) has been reported as a positive regulator of Dehydration-responsive element binding protein 2A (DREB2A), and the overexpression of DPB3-1 enhances heat stress tolerance without growth retardation. Here, we show that DPB3-1 interacts with DREB2A homologues in rice and soya bean. Transactivation analyses with Arabidopsis and rice mesophyll protoplasts indicate that DPB3-1 and its rice homologue OsDPB3-2 function as positive regulators of DREB2A homologues. Overexpression of DPB3-1 did not affect plant growth or yield in rice under nonstress conditions. Moreover, DPB3-1-overexpressing rice showed enhanced heat stress tolerance. Microarray analysis revealed that many heat stress-inducible genes were up-regulated in DPB3-1-overexpressing rice under heat stress conditions. However, the overexpression of DPB3-1 using a constitutive promoter had almost no effect on the expression of these genes under nonstress conditions. This may be because DPB3-1 is a coactivator and thus lacks inherent transcriptional activity. We conclude that DPB3-1, a coactivator that functions specifically under abiotic stress conditions, could be utilized to increase heat stress tolerance in crops without negative effects on vegetative and reproductive growth.
机译:增加作物中热应激耐受性是粮食安全的重要挑战,以便于适应全球变暖。在拟南芥中,转录调节剂DNA聚合酶II亚基B3-1(DPB3-1)/核因子Y亚基C10(NF-YC10)已被报告为脱水响应元结合蛋白2a(DREB2a)的阳性调节剂, DPB3-1的过表达增强了无生长延迟的热应激耐受性。在这里,我们展示了DPB3-1与Dreb2A同源物在水稻和大豆豆中互动。用拟南芥和水稻培养基原生质体分析的反式激活分析表明,DPB3-1及其水稻同源物OSDPB3-2作为DREB2A同源物的阳性调节剂。 DPB3-1的过度表达在非居留条件下不会影响植物生长或水稻产量。此外,DPB3-1过表达水稻显示出增强的热应力耐受性。微阵列分析显示,在热应激条件下,在DPB3-1过表达水稻中升高了许多热应激诱导基因。然而,使用组成型启动子的DPB3-1的过表达几乎没有对非士分状条件表达这些基因的表达几乎没有影响。这可能是因为DPB3-1是一种共觉器,因此缺乏固有的转录活动。我们得出结论,DPB3-1是一种特异性在非生物胁迫条件下功能的共觉器,可用于增加作物中的热应激耐受性,而不会对营养和生殖生长产生负面影响。

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