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Two strawberry miR159 family members display developmental-specific expression patterns in the fruit receptacle and cooperatively regulate Fa-GAMYB

机译:两个草莓miR159家族成员在水果容器中显示发育特定的表达模式,并共同调节Fa-GAMYB

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摘要

We have reported previously that the gibberellin (GA) content in strawberry receptacle is high, peaking at specific stages, pointing to a role of this hormone in fruit development. In Arabidopsis, miR159 levels are dependent on GA concentration. This prompted us to investigate the role of two members of the miR159 family and their putative strawberry target gene, GAMYB, in relation to changes in GA content during the course of fruit development. • The highest expression level of the two Fa-MIR159 genes was in the fruit's receptacle tissue, with dramatic changes observed throughout development. The lowest levels of total mature miR159 (a and b) were observed during the white stage of receptacle development, which was concurrent with the highest expression of Fa-GAMYB. A functional interaction between miR159 and Fa-GAMYB has been demonstrated in receptacle tissue. • The application of bioactive GA (i.e. GA(3) ) to strawberry plants caused the down-regulated expression of Fa-MIR159a, but the expression of Fa-MIR159b was not affected significantly. Clear discrepancies between Fa-MIR159b and mature Fa-miR159b levels were indicative of post-transcriptional regulation of Fa-MIR159b gene expression. • We propose that Fa-miR159a and Fa-miR159b interact with Fa-GAMYB during the course of strawberry receptacle development, and that they act in a cooperative fashion to respond, in part, to changes in GA endogenous levels
机译:我们以前曾报道过,草莓容器中的赤霉素(GA)含量很高,在特定阶段达到峰值,表明该激素在水果发育中的作用。在拟南芥中,miR159水平取决于GA浓度。这促使我们调查了miR159家族的两个成员及其推定的草莓靶基因GAMYB与水果发育过程中GA含量变化的关系。 •两个Fa-MIR159基因的最高表达水平在果实的接受器组织中,在整个发育过程中均发生了显着变化。在容器发育的白色阶段观察到最低的总成熟miR159水平(a和b),这与Fa-GAMYB的最高表达同时发生。 miR159和Fa-GAMYB之间的功能相互作用已在容器组织中得到证实。 •在草莓植株上使用生物活性GA(即GA(3))导致Fa-MIR159a的表达下调,但Fa-MIR159b的表达并未受到明显影响。 Fa-MIR159b与成熟Fa-miR159b水平之间的明显差异指示Fa-MIR159b基因表达的转录后调控。 •我们建议在草莓容器开发过程中,Fa-miR159a和Fa-miR159b与Fa-GAMYB相互作用,并建议它们以合作方式起作用,部分响应GA内源性水平的变化

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