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Functional analysis of three Arabidopsis transcriptional co-repressors linking floral regulators to ABA hormone signaling.

机译:三种拟南芥转录共抑制子的功能分析,它们将花调节因子与ABA激素信号传导联系起来。

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摘要

Hormonal signaling and developmental patterning have mostly been studied as separate and independent processes. However, the highly plastic development of plants suggests that plant development must incorporate environmental and physiological signals and adapt accordingly. The question of how development and hormone signaling influence each other needs to be answered yet. This work shows that the regulators of flower development such as LUG, LUH and SEU also function in ABA (Abscisic Acid) hormone signaling. Further, it is shown that LUG and LUH, two paralogs in Arabidopsis, are partially redundant in function, but each plays a more prominent role in a different process. This study provides evidence that the basic mechanisms of plant developmental regulation and hormonal signaling are interconnected and utilize similar regulatory components.; LUG and SEU are two transcription co-repressors previously shown to regulate the spatial and temporal domains of expression of a key regulator of flower development AGAMOUS ( AG) in Arabidopsis. LUG and SEU was shown to form a co-repression complex similar to the TUP1/Ssn6 co-repressor complex of yeast. In Arabidopsis, the one and only homolog of LUG, LUH, is 44% identical to LUG. However, its function is completely unknown. A putative luh null mutation was identified and luh mutants show reduced sensitivity to ABA and reduced expression of ABA-response genes. LUH is proposed to act to repress the transcription of ERA1, a negative regulator of ABA signaling. This is supported by increased ERA1 expression in luh-1 mutants. This study also suggests a possible role of LUG and SEU in ABA signaling.; Although luh mutant by itself does not have a floral phenotype, luh has been found to interact with lug and seu genetically during flower development, based on the enhanced floral phenotype in the double mutants between luh and lug and between luh and seu. Yeast two hybrid data suggests that, like LUG, LUH also physically interacts with SEU to form a co-repressor complex. Thus, while LUG plays a major role in flower development, LUH plays a more important role in ABA signaling.
机译:激素信号和发育模式的研究主要是作为独立的过程进行的。但是,植物的高度可塑性发育表明植物的发育必须吸收环境和生理信号并作出相应的适应。发育和激素信号如何相互影响的问题还需要回答。这项工作表明,诸如LUG,LUH和SEU之类的花朵发育调节剂在ABA(脱落酸)激素信号传导中也起作用。此外,已表明,在拟南芥中的两个旁系同源物LUG和LUH在功能上是部分冗余的,但在不同的过程中各自发挥更重要的作用。这项研究提供了证据,表明植物发育调节和激素信号传导的基本机制是相互联系的,并利用相似的调节成分。 LUG和SEU是两个转录共阻遏物,先前显示它们可以调节拟南芥中花卉发育的重要调节剂AGAMOUS(AG)的表达的时空域。 LUG和SEU被证明可以形成共抑制复合物,类似于酵母的TUP1 / Ssn6共抑制复合物。在拟南芥中,LUG的唯一同源物LUH与LUG同源性为44%。但是,其功能是完全未知的。确定推定的luh null突变,并且luh突变体显示出对ABA的敏感性降低和ABA响应基因的表达降低。有人提议LUH来抑制ERA1的转录,ERA1是ABA信号的负调节剂。 luh-1突变体中的ERA1表达增加支持了这一点。这项研究还暗示了LUG和SEU在ABA信号传导中的可能作用。尽管luh突变体本身不具有花表型,但基于luh和lug之间以及luh和seu之间的双突变体中增强的花卉表型,已经发现luh在花发育过程中与lug和seu发生了遗传相互作用。酵母的两个混合数据表明,与LUG一样,LUH也与SEU物理相互作用形成共阻遏物复合物。因此,尽管LUG在花的发育中起主要作用,但LUH在ABA信号传导中起着更重要的作用。

著录项

  • 作者

    Sitaraman, Jayashree.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Biology Molecular.; Biology Animal Physiology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 167 p.
  • 总页数 167
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;生理学;
  • 关键词

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