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WOX/Auxin 生物合成模块控制生长以塑造叶片形态。

A WOX/Auxin Biosynthesis Module Controls Growth to Shape Leaf Form.

机构信息

Department of Comparative Development and Genetics, Max Planck Institute for Plant Breeding Research, Carl-von-Linné-Weg 10, 50829 Cologne, Germany.

Umeå Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, 90183 Umea, Sweden; Laboratory of Growth Regulators, Institute of Experimental Botany of the Czech Academy of Sciences and Faculty of Science of Palacký University, Šlechtitelů 27, 78371 Olomouc, Czech Republic.

出版信息

Curr Biol. 2020 Dec 21;30(24):4857-4868.e6. doi: 10.1016/j.cub.2020.09.037. Epub 2020 Oct 8.

Abstract

A key challenge in biology is to understand how the regional control of cell growth gives rise to final organ forms. Plant leaves must coordinate growth along both the proximodistal and mediolateral axes to produce their final shape. However, the cell-level mechanisms controlling this coordination remain largely unclear. Here, we show that, in A. thaliana, WOX5, one of the WUSCHEL-RELATED HOMEOBOX (WOX) family of homeobox genes, acts redundantly with WOX1 and WOX3 (PRESSED FLOWER [PRS]) to control leaf shape. Through genetics and hormone measurements, we find that these WOXs act in part through the regional control of YUCCA (YUC) auxin biosynthetic gene expression along the leaf margin. The requirement for WOX-mediated YUC expression in patterning of leaf shape cannot be bypassed by the epidermal expression of YUC, indicating that the precise domain of auxin biosynthesis is important for leaf form. Using time-lapse growth analysis, we demonstrate that WOX-mediated auxin biosynthesis organizes a proximodistal growth gradient that promotes lateral growth and consequently the characteristic ellipsoid A. thaliana leaf shape. We also provide evidence that WOX proteins shape the proximodistal gradient of differentiation by inhibiting differentiation proximally in the leaf blade and promoting it distally. This regulation allows sustained growth of the blade and enables a leaf to attain its final form. In conclusion, we show that the WOX/auxin regulatory module shapes leaf form by coordinating growth along the proximodistal and mediolateral leaf axes.

摘要

生物学的一个关键挑战是理解细胞生长的区域控制如何产生最终的器官形态。植物叶片必须协调沿着近-远轴和中-侧轴的生长,以产生其最终形状。然而,控制这种协调的细胞水平机制在很大程度上仍不清楚。在这里,我们表明,在拟南芥中,WOX5 是 WUSCHEL-RELATED HOMEOBOX(WOX)家族同源盒基因之一,与 WOX1 和 WOX3(PRESSED FLOWER [PRS])一起冗余地作用,以控制叶片形状。通过遗传学和激素测量,我们发现这些 WOX 部分通过沿叶片边缘的 YUCCA(YUC)生长素生物合成基因表达的区域控制起作用。WOX 介导的 YUC 表达在叶片形状的模式形成中不能被 YUC 的表皮表达所绕过,这表明生长素生物合成的精确域对于叶片形状很重要。使用延时生长分析,我们证明 WOX 介导的生长素生物合成组织了一个近-远生长梯度,促进了侧向生长,从而促进了拟南芥典型的椭圆形叶片形状。我们还提供了证据表明,WOX 蛋白通过抑制叶片近部的分化并促进其远部的分化来塑造近-远分化梯度。这种调节允许叶片持续生长,并使叶片能够达到其最终形态。总之,我们表明,WOX/生长素调节模块通过协调沿着近-远和中-侧叶片轴的生长来塑造叶片形状。

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