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Overexpression of a microRNA-targeted NAC transcription factor improves drought and salt tolerance in Rice via ABA-mediated pathways

机译:MicroRNA靶向NAC转录因子的过度表达通过ABA介导的途径提高了水稻中的干旱和耐盐性

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Abstract BackgroundThe NAC (NAM, AFAT, and CUC) transcription factors play critical roles in rice ( Oryza sativa ) development and stress regulation. Overexpressing a microRNA (miR164b)-resistant OsNAC2 mutant gene, which generates transcripts that cannot be targeted by miR164b, improves rice plant architecture and yield; however, the performance of these mOsNAC2 -overexpressing lines, named ZUOErN3 and ZUOErN4, under abiotic stress conditions such as drought have not yet been fully characterized.ResultsIn this study, we showed that the germination of ZUOErN3 and ZUOErN4 seeds was delayed in comparison with the wild-type (WT) seeds, although the final germination rates of all lines were over 95%. The quantification of the endogenous ABA levels revealed that the germinating mOsNAC2 -overexpressing seeds had elevated ABA levels, which resulted in their slower germination. The mOsNAC2 -overexpressing plants were significantly more drought tolerance than the WT plants, with the survival rate increasing from 11.2% in the WT to nearly 70% in ZUOErN3 and ZUOErN4 plants after a drought treatment. Salt (NaCl) tolerance was also increased in the ZUOErN3 and ZUOErN4 plants due to significantly increased ABA levels. A reverse transcription quantitative PCR (RT-qPCR) analysis showed a significant increase in the expression of the ABA biosynthesis genes OsNCED1 and OsNCED3 in the mOsNAC2 -overexpressing lines, and the expression levels of the stress-responsive genes OsP5CS1 , OsLEA3 , and OsRab16 were significantly increased in these plants. Moreover, OsNAC2 directly interacted with the promoters of OsLEA3 and OsNCED3 in yeast one-hybrid assays.ConclusionsTaken together, our results show that OsNAC2 plays a positive regulatory role in drought and salt tolerance in rice through ABA-mediated pathways.
机译:摘要背景NAC(NAM,AFAT和CUC)转录因子在稻米(Oryza Sativa)开发和压力监管中起重要作用。过表达MicroRNA(miR164b)-resistant osnac2突变基因,其产生不能靶向Mir164b的转录物,从而改善了水稻植物结构和产量;然而,在非生物胁迫条件下,如干旱如干旱等非生物胁迫条件下,这些Mosnac2 -overcressing线的性能尚未完全表征。本研究结果表明,与此次相比,我们表明Zuoern3和Zuoern4种子的萌发延迟了野生型(WT)种子,尽管所有线的最终发芽率超过95%。内源性ABA水平的定量揭示了发芽的MOSNAC2 -Overxcressing种子升高了ABA水平,这导致萌发较慢。 Mosnac2 -overexpressing植物比WT植物显着更大,其存活率从WT的11.2%增加到Zuoern3和Zuoern4植物中的11.2%。由于ABA水平显着增加,Zuoern3和Zuoern4植物也增加了盐(NaCl)耐受性。逆转录定量PCR(RT-QPCR)分析显示出在MOSNAC2 -overexcress系中表达ABA生物合成基因Osnced1和Osnced3的显着增加,以及应力响应基因OSP5CS1,OSLEA3和OSRAB16的表达水平这些植物显着增加。此外,OSNAC2直接与OSLEA3和OSNCED3的启动子与酵母单杂交测定的启动子相互作用。结合在一起,我们的结果表明,OSNAC2通过ABA介导的途径对水稻的干旱和耐盐性作出正调节作用。

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