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首页> 外文期刊>The Plant Cell >A Dual Role for the S-Locus Receptor Kinase in Self-Incompatibility and Pistil Development Revealed by an Arabidopsis rdr6 Mutation.
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A Dual Role for the S-Locus Receptor Kinase in Self-Incompatibility and Pistil Development Revealed by an Arabidopsis rdr6 Mutation.

机译:S-基因座受体激酶在自我不相容性和雌蕊发育中的双重作用由拟南芥属rdr6突变揭示。

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摘要

The coordinate evolution of self-incompatibility (SI) and stigma-anther separation, two mechanisms that promote cross-pollination in plants, has been a long-standing puzzle in evolution and development. Using a transgenic self-incompatible Arabidopsis thaliana model, we performed screens for mutants exhibiting a modified SI response. A mutation in the RNA-dependent RNA polymerase RDR6, which functions in trans-acting short interfering RNA (ta-siRNA) production, was found that simultaneously enhances SI and causes stigma exsertion, without associated increases in SRK transcript levels. While rdr6 mutants had been previously shown to exhibit stochastic stigma exsertion, our results demonstrate that the S-locus receptor kinase (SRK) gene further enhances pistil elongation and stigma exsertion in this mutant background, a process that requires SRK catalytic activity and correlates with SRK transcript levels. These results suggest that positive regulators or effectors of SI and pistil development are regulated by ta-siRNA(s). By establishing complex connections between SI and stigma exsertion through the sharing of a ta-siRNA-mediated regulatory pathway and the dual role of SRK in SI and pistil development, our study provides a molecular explanation for the coordinate evolution of these processes.
机译:自交不亲和性和柱头-花药分离的协调进化,这是促进植物异花授粉的两种机制,一直是进化和发展中长期存在的难题。使用转基因的自我不相容拟南芥模型,我们进行了筛选,以显示出改良的SI反应的突变体。发现在依赖RNA的RNA聚合酶RDR6中有一个突变,该突变在反式短干扰RNA(ta-siRNA)的产生中起作用,该突变同时增强了SI并导致柱头突出,而SRK转录水平没有相关增加。尽管以前已经证明rdr6突变体表现出随机的柱头外露,但我们的结果表明S-基因座受体激酶(SRK)基因在这种突变体背景下进一步增强了雌蕊的伸长和柱头外露,这是一个需要SRK催化活性并与SRK相关的过程成绩单水平。这些结果表明,SI和雌蕊发育的阳性调节子或效应子受ta-siRNA的调节。通过共享ta-siRNA介导的调控途径以及SRK在SI和雌蕊发育中的双重作用,在SI和柱头外露之间建立复杂的联系,我们的研究为这些过程的协调进化提供了分子解释。

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