首页> 外文期刊>International Journal of Molecular Sciences >MfPIF1 of Resurrection Plant Myrothamnus flabellifolia Plays a Positive Regulatory Role in Responding to Drought and Salinity Stresses in Arabidopsis
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MfPIF1 of Resurrection Plant Myrothamnus flabellifolia Plays a Positive Regulatory Role in Responding to Drought and Salinity Stresses in Arabidopsis

机译:复活植物的MFPIF1 Myrothamnus flabelliaIa在回应拟南芥中的干旱和盐度胁迫方面发挥了积极的监管作用

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Phytochrome-interacting factors (PIFs), a subfamily of basic helix-loop-helix (bHLH) transcription factors (TFs), play critical roles in regulating plant growth and development. The resurrection plant Myrothamnus flabellifolia possesses a noteworthy tolerance to desiccation, but no PIFs related to the response to abiotic stress have been functionally studied. In this study, a dehydration-inducible PIF gene, MfPIF1 , was cloned and characterized. Subcellular localization assay revealed that MfPIF1 is localized predominantly in the nucleus. Overexpression of MfPIF1 in Arabidopsis thaliana led to enhanced drought and salinity tolerance, which was attributed to higher contents of chlorophyll, proline (Pro), soluble protein, and soluble sugar, activities of antioxidant enzymes as well as lower water loss rate, malondialdehyde (MDA) content, and reactive oxygen species (ROS) accumulation in transgenic lines compared with control plants. Moreover, MfPIF1 decreased stomatal aperture after drought and abscisic acid (ABA) treatment, and increased expression of both ABA biosynthesis and ABA-responsive genes including NCED3 , P5CS , and RD29A . Overall, these results indicated that MfPIF1 may act as a positive regulator to drought and salinity responses, and therefore could be considered as a potential gene for plant genetic improvement of drought and salinity tolerance.
机译:Phytochrome - 相互作用因子(PIFS),基本螺旋环 - 螺旋(BHLH)转录因子(TFS)的亚家族,在调节植物生长和发展方面发挥关键作用。复活植物Myrothamnus flabellifolia具有值得注意的耐受性,但没有在功能上研究与对非生物胁迫的反应相关的PIF。在该研究中,克隆并表征了一种脱水诱导的PIF基因MFPIF1。亚细胞定位测定显示MFPIF1主要在核中定位。拟南芥MFPIF1的过度表达导致了增强的干旱和盐度耐受性,其归因于叶绿素,脯氨酸(Pro),可溶性蛋白质和可溶性糖,抗氧化酶的活性以及较低的水损失,丙二醛(MDA )与对照植物相比,转基因系中的含量和反应性氧(ROS)积累。此外,MFPIF1在干旱和脱落酸(ABA)处理后降低了气孔孔,并增加了ABA生物合成和ABA响应基因的表达,包括NCED3,P5C和RD29A。总体而言,这些结果表明MFPIF1可以作为干旱和盐度反应的阳性调节剂,因此可以被认为是植物遗传改善干旱和盐度耐受性的潜在基因。

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