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BLADE-ON-PETIOLE1 Coordinates Organ Determinacy and Axial Polarity in Arabidopsis by Directly Activating ASYMMETRIC LEAVES2

机译:直接作用于不对称叶2的BLADE-ON-PETIOLE1协调拟南芥中的器官确定性和轴极性。

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摘要

Continuous organ formation is a hallmark of plant development that requires organ-specific gene activity to establish determinacy and axial patterning, yet the molecular mechanisms that coordinate these events remain poorly understood. Here, we show that the organ-specific BTB-POZ domain proteins BLADE-ON-PETIOLE1 (BOP1) and BOP2 function as transcriptional activators during Arabidopsis thaliana leaf formation. We identify as a direct target of BOP1 induction the ASYMMETRIC LEAVES2 (AS2) gene, which promotes leaf cell fate specification and adaxial polarity. We find that BOP1 associates with the AS2 promoter and that BOP1 and BOP2 are required for AS2 activation specifically in the proximal, adaxial region of the leaf, demonstrating a role for the BOP proteins as proximal-distal as well as adaxial-abaxial patterning determinants. Furthermore, repression of BOP1 and BOP2 expression by the indeterminacy-promoting KNOX gene SHOOTMERISTEMLESS is critical to establish a functional embryonic shoot apical meristem. Our data indicate that direct activation of AS2 transcription by BOP1 and BOP2 is vital for generating the conditions for KNOX repression at the leaf base and may represent a conserved mechanism for coordinating leaf morphogenesis with patterning along the adaxial-abaxial and the proximal-distal axes.
机译:连续的器官形成是植物发育的标志,需要器官特异性基因的活性来确定性和确定轴向模式,但是协调这些事件的分子机制仍然知之甚少。在这里,我们显示器官特异性BTB-POZ域蛋白BLADE-ON-PETIOLE1(BOP1)和BOP2在拟南芥叶形成过程中起转录激活剂的作用。我们确定ASYMMETRIC LEAVES2(AS2)基因作为BOP1诱导的直接靶标,该基因可促进叶细胞的命运规范和近轴极性。我们发现BOP1与AS2启动子相关,并且BOP1和BOP2是AS2激活所必需的,特别是在叶的近端,近端区域,这证明了BOP蛋白作为近端-远端以及近端-远端图案决定因素的作用。此外,不确定性促进型KNOX基因SHOOTMERISTEMLESS抑制BOP1和BOP2的表达对于建立功能性的胚芽顶分生组织至关重要。我们的数据表明BOP1和BOP2直接激活AS2转录对于在叶基部产生抑制KNOX的条件至关重要,并且可能代表了保守的机制,用于协调叶形态发生以及沿前后轴和近端轴的模式。

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