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The ASYMMETRIC LEAVES Complex Employs Multiple Modes of Regulation to Affect Adaxial-Abaxial Patterning and Leaf Complexity

机译:不对称叶复合物采用多种调节模式来影响正反轴构图和叶片复杂性

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摘要

Flattened leaf architecture is not a default state but depends on positional information to precisely coordinate patterns of cell division in the growing primordium. This information is provided, in part, by the boundary between the adaxial (top) and abaxial (bottom) domains of the leaf, which are specified via an intricate gene regulatory network whose precise circuitry remains poorly defined. Here, we examined the contribution of the ASYMMETRIC LEAVES (AS) pathway to adaxial-abaxial patterning in Arabidopsis thaliana and demonstrate that AS1-AS2 affects this process via multiple, distinct regulatory mechanisms. AS1-AS2 uses Polycomb-dependent and -independent mechanisms to directly repress the abaxial determinants MIR166A, YABBY5, and AUXIN RESPONSE FACTOR3 (ARF3), as well as a nonrepressive mechanism in the regulation of the adaxial determinant TAS3A. These regulatory interactions, together with data from prior studies, lead to a model in which the sequential polarization of determinants, including AS1-AS2, explains the establishment and maintenance of adaxial-abaxial leaf polarity. Moreover, our analyses show that the shared repression of ARF3 by the AS and trans-acting small interfering RNA () pathways intersects with additional AS1-AS2 targets to affect multiple nodes in leaf development, impacting polarity as well as leaf complexity. These data illustrate the surprisingly multifaceted contribution of AS1-AS2 to leaf development showing that, in conjunction with the pathway, AS1-AS2 keeps the Arabidopsis leaf both flat and simple.
机译:扁平的叶子结构不是默认状态,而是依赖于位置信息来精确地协调生长中的原基中细胞分裂的模式。该信息部分是由叶的近端(顶部)域和近端(底部)域之间的边界提供的,这些边界是通过复杂的基因调控网络指定的,该网络的精确电路仍然定义不清。在这里,我们检查了不对称叶(AS)通路对拟南芥中轴-背面图案的贡献,并证明AS1-AS2通过多种不同的调控机制影响该过程。 AS1-AS2使用Polycomb依赖性和非依赖性机制来直接阻抑反基因决定簇MIR166A,YABBY5和AUXIN RESPONSE FACTOR3(ARF3),以及一种非阻抑机制来调节反基因决定簇TAS3A。这些调节相互作用以及来自先前研究的数据形成了一个模型,在该模型中,行列式(包括AS1-AS2)的顺序极化解释了正反叶极性的建立和维持。此外,我们的分析表明,AS和反式作用的小干扰RNA()途径对ARF3的共有抑制作用与其他AS1-AS2目标相交,从而影响叶片发育中的多个节点,影响极性和叶片复杂性。这些数据说明了AS1-AS2对叶片发育的惊人的多方面贡献,表明AS1-AS2与该途径一起使拟南芥叶片既平坦又简单。

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