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首页> 外文期刊>Plant physiology >Transcriptional, Posttranscriptional, and Posttranslational Regulation of SHOOT MERISTEMLESS Gene Expression in Arabidopsis Determines Gene Function in the Shoot Apex
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Transcriptional, Posttranscriptional, and Posttranslational Regulation of SHOOT MERISTEMLESS Gene Expression in Arabidopsis Determines Gene Function in the Shoot Apex

机译:拟南芥中SHOOT MERISTEMLESS基因表达的转录,转录后和翻译后调控决定了芽尖的基因功能

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摘要

The activity of SHOOTMERISTEMLESS (STM) is required for the functioning of the shoot apical meristem (SAM). STM is expressed in the SAM but is down-regulated at the site of leaf initiation. STM is also required for the formation of compound leaves. However, how the activity of STM is regulated at the transcriptional, posttranscriptional, and posttranslational levels is poorly understood. We previously found two conserved noncoding sequences in the promoters of STM-like genes across angiosperms, the K-box and the RB-box. Here, we characterize the function of the RB-box in Arabidopsis (Arabidopsis thaliana). The RB-box, along with the K-box, regulates the expression of STM in leaf sinuses, which are areas on the leaf blade with meristematic potential. The RB-box also contributes to restrict STM expression to the SAM. We identified FAR1-RELATED SEQUENCES-RELATED FACTOR1 (FRF1) as a binding factor to the RB-box region. FRF1 is an uncharacterized member of a subfamily of four truncated proteins related to the FAR1-RELATED SEQUENCES factors. Internal deletion analysis of the STM promoter identified a region required to repress the expression of STM in hypocotyls. Expression of STM in leaf primordia under the control of the JAGGED promoter produced plants with partially undifferentiated leaves. We further found that the ELK domain has a role in the posttranslational regulation of STM by affecting the nuclear localization of STM.
机译:SHOOTMERISTEMLESS(STM)的活性是芽顶分生组织(SAM)运作所必需的。 STM在SAM中表达,但在叶片起始部位被下调。复叶的形成也需要STM。但是,人们对如何在转录,转录后和翻译后水平调控STM的活性了解甚少。我们之前在被子植物的STM样基因的启动子中发现了两个保守的非编码序列,即K-box和RB-box。在这里,我们表征了拟南芥(Arabidopsis thaliana)中RB盒的功能。 RB盒与K盒一起,调节STM在叶片鼻窦中的表达,叶片鼻窦是叶片上具有分生组织潜能的区域。 RB盒还有助于将STM表达限制在SAM上。我们确定FAR1相关序列相关因子1(FRF1)作为对RB框区域的结合因子。 FRF1是与FAR1相关序列因子相关的四个截短蛋白的亚家族的未表征成员。 STM启动子的内部缺失分析确定了抑制下胚轴中STM表达的区域。在JAGGED启动子的控制下,STM在叶原基中的表达产生了部分未分化叶片的植物。我们进一步发现,ELK结构域通过影响STM的核定位而在STM的翻译​​后调控中起作用。

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