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首页> 外文期刊>The Plant Cell >The KNOXI Transcription Factor SHOOT MERISTEMLESS Regulates Floral Fate in Arabidopsis
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The KNOXI Transcription Factor SHOOT MERISTEMLESS Regulates Floral Fate in Arabidopsis

机译:诺克西转录因子拍摄公司在拟南芥中调节花卉命运

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摘要

Plants have evolved a unique and conserved developmental program that enables the conversion of leaves into floral organs. Elegant genetic and molecular work has identified key regulators of flower meristem identity. However, further understanding of flower meristem specification has been hampered by redundancy and by pleiotropic effects. The KNOXI transcription factor SHOOT MERISTEMLESS (STM) is a well-characterized regulator of shoot apical meristem maintenance. Arabidopsis thaliana stm loss-of-function mutants arrest shortly after germination; therefore, the knowledge on later roles of STM in later processes, including flower development, is limited. Here, we uncover a role for STM in the specification of flower meristem identity. Silencing STM in the APETALA1 (AP1) expression domain in the ap1-4 mutant background resulted in a leafy-flower phenotype, and an intermediate stm-2 allele enhanced the flower meristem identity phenotype of ap1-4. Transcriptional profiling of STM perturbation suggested that STM activity affects multiple floral fate genes, among them the F-box protein-encoding gene UNUSUAL FLORAL ORGANS (UFO). In agreement with this notion, stm-2 enhanced the ufo-2 floral fate phenotype, and ectopic UFO expression rescued the leafy flowers in genetic backgrounds with compromised AP1 and STM activities. This work suggests a genetic mechanism that underlies the activity of STM in the specification of flower meristem identity.
机译:植物已经发展了一种独特和保守的发展计划,使叶片转化为花​​器官。优雅的遗传和分子作品已确定花卉营商标识的关键调节因素。然而,通过冗余和渗透效应,进一步了解花卉绩效规范。克诺克西转录因子拍摄公司(STM)是拍摄顶端公司维护的良好特征调节因子。拟南芥的拟南芥STM STM失去功能突变体在发芽后不久逮捕;因此,对后期工艺的后来作用的知识是有限的。在这里,我们发现在花卉绩效标识的规范中发现了STM的作用。在AP1-4突变体背景中的Apetala1(AP1)表达域中的沉默STM导致叶状花表型,中间体STM-2等位基因增强了AP1-4的花卉分型同一表型。 STM扰动的转录分析表明,STM活性会影响多个花卉命运基因,其中F型盒蛋白编码基因异常的花动器官(UFO)。同意这种概念,STM-2增强了UFO-2的花卉命运表型,异位UFO表达在受损AP1和STM活动中拯救了遗传背景中的叶状花卉。这项工作表明了一种遗传机制,使STM在花卉绩效标识规范下基础。

著录项

  • 来源
    《The Plant Cell》 |2018年第6期|共13页
  • 作者单位

    Tel Aviv Univ Sch Plant Sci &

    Food Secur IL-69978 Tel Aviv Israel;

    Monash Univ Sch Biol Sci Melbourne Vic 3800 Australia;

    Hebrew Univ Jerusalem Robert H Smith Inst Plant Sci &

    Genet Agr IL-76100 Rehovot Israel;

    Monash Univ Sch Biol Sci Melbourne Vic 3800 Australia;

    Hebrew Univ Jerusalem Robert H Smith Inst Plant Sci &

    Genet Agr IL-76100 Rehovot Israel;

    Tel Aviv Univ Sch Plant Sci &

    Food Secur IL-69978 Tel Aviv Israel;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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