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首页> 外文期刊>The Plant Cell >Out of the Mouths of Plants: The Molecular Basis of the Evolution and Diversity of Stomatal Development.
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Out of the Mouths of Plants: The Molecular Basis of the Evolution and Diversity of Stomatal Development.

机译:走出植物的嘴:气孔发育进化和多样性的分子基础。

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摘要

Stomata are microscopic valves on the plant epidermis that played a critical role in the evolution of land plants. Studies in the model dicot Arabidopsis thaliana have identified key transcription factors and signaling pathways controlling stomatal patterning and differentiation. Three paralogous Arabidopsis basic helix-loop-helix proteins, SPEECHLESS (SPCH), MUTE, and FAMA, mediate sequential steps of cell-state transitions together with their heterodimeric partners SCREAM (SCRM) and SCRM2. Cell-cell signaling components, including putative ligands, putative receptors, and mitogen-activated protein kinase cascades, orient asymmetric cell divisions and prevent overproduction and clustering of stomata. The recent availability of genome sequence and reverse genetics tools for model monocots and basal land plants allows for the examination of the conservation of genes important in stomatal patterning and differentiation. Studies in grasses have revealed that divergence of SPCH-MUTE-FAMA predates the evolutionary split of monocots and dicots and that these proteins show conserved and novel roles in stomatal differentiation. By contrast, specific asymmetric cell divisions in Arabidopsis and grasses require unique molecular components. Molecular phylogenetic analysis implies potential conservation of signaling pathways and prototypical functions of the transcription factors specifying stomatal differentiation.
机译:气孔是植物表皮上的微小阀门,在陆地植物的进化中起着至关重要的作用。在双子叶植物拟南芥模型中的研究已经确定了关键的转录因子和控制气孔模式和分化的信号传导途径。 SPEECHLESS(SPCH),MUTE和FAMA三个旁系拟南芥基本螺旋-环-螺旋蛋白与它们的异二聚体伴侣SCREAM(SCRM)和SCRM2一起介导了细胞状态转变的顺序步骤。细胞信号传导成分,包括推定的配体,推定的受体和丝裂原活化的蛋白激酶级联,可定向不对称细胞分裂并防止气孔过度产生和聚集。用于模型单子叶植物和基础陆生植物的基因组序列和反向遗传学工具的最新可用性允许检查在气孔模式和分化中重要的基因的保守性。在草丛中的研究表明,SPCH-MUTE-FAMA的发散先于单子叶植物和双子叶植物的进化分裂,并且这些蛋白质在气孔分化中显示出保守的新作用。相比之下,拟南芥和草中特定的不对称细胞分裂需要独特的分子成分。分子系统发育分析暗示了信号通路的潜在保守性以及指定气孔分化的转录因子的原型功能。

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