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Negative Regulation of Abscisic Acid Signaling by the Fagus sylvatica FsPP2C1 Plays A Role in Seed Dormancy Regulation and Promotion of Seed Germination1

机译:真菌FsPP2C1对脱落酸信号的负调控在种子休眠调控和种子萌发中发挥作用1

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摘要

FsPP2C1 was previously isolated from beech (Fagus sylvatica) seeds as a functional protein phosphatase type-2C (PP2C) with all the conserved features of these enzymes and high homology to ABI1, ABI2, and PP2CA, PP2Cs identified as negative regulators of ABA signaling. The expression of FsPP2C1 was induced upon abscisic acid (ABA) treatment and was also up-regulated during early weeks of stratification. Furthermore, this gene was specifically expressed in ABA-treated seeds and was hardly detectable in vegetative tissues. In this report, to provide genetic evidence on FsPP2C1 function in seed dormancy and germination, we used an overexpression approach in Arabidopsis because transgenic work is not feasible in beech. Constitutive expression of FsPP2C1 under the cauliflower mosaic virus 35S promoter confers ABA insensitivity in Arabidopsis seeds and, consequently, a reduced degree of seed dormancy. Additionally, transgenic 35S:FsPP2C1 plants are able to germinate under unfavorable conditions, as inhibitory concentrations of mannitol, NaCl, or paclobutrazol. In vegetative tissues, Arabidopsis FsPP2C1 transgenic plants show ABA-resistant early root growth and diminished induction of the ABA-response genes RAB18 and KIN2, but no effect on stomatal closure regulation. Seed and vegetative phenotypes of Arabidopsis 35S:FsPP2C1 plants suggest that FsPP2C1 negatively regulates ABA signaling. The ABA inducibility of FsPP2C1 expression, together with the transcript accumulation mainly in seeds, suggest that it could play an important role modulating ABA signaling in beechnuts through a negative feedback loop. Finally, we suggest that negative regulation of ABA signaling by FsPP2C1 is a factor contributing to promote the transition from seed dormancy to germination during early weeks of stratification.
机译:FsPP2C1先前从山毛榉(Fagus sylvatica)种子中分离为功能性蛋白磷酸酶2C型(PP2C),具有这些酶的所有保守特征,并且与ABI1,ABI2和PP2CA高度同源,PP2Cs被确定为ABA信号的负调控因子。 FsPP2C1的表达是由脱落酸(ABA)处理诱导的,并且在分层的前几周也被上调。此外,该基因在ABA处理的种子中特异性表达,在营养组织中几乎检测不到。在此报告中,为了提供有关FsPP2C1在种子休眠和萌发中功能的遗传证据,我们在拟南芥中使用了过表达方法,因为在山毛榉中转基因工作不可行。花椰菜花叶病毒35S启动子下FsPP2C1的组成型表达使拟南芥种子中的ABA不敏感,从而降低了种子休眠的程度。另外,转基因的35S:FsPP2C1植物能够在不利的条件下发芽,其抑制浓度为甘露醇,NaCl或多效唑。在营养组织中,拟南芥FsPP2C1转基因植物显示出ABA抗性的早期根生长,并减弱了ABA反应基因RAB18和KIN2的诱导,但对气孔关闭调节没有影响。拟南芥35S:FsPP2C1植物的种子和营养表型表明FsPP2C1负调控ABA信号传导。 FsPP2C1表达的ABA诱导性,以及转录本主要在种子中的积累,表明它可能通过负反馈回路在调节山毛榉中的ABA信号传导中起重要作用。最后,我们建议在分层的最初几周内,FsPP2C1对ABA信号的负调控是促进从种子休眠到发芽过渡的一个因素。

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