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Elastic domains regulate growth and organogenesis in the plant shoot apical meristem

机译:弹性域调节植物茎尖分生组织的生长和器官发生

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摘要

Although genetic control of morphogenesis is well established, elaboration of complex shapes requires changes in the mechanical properties of cells. In plants, the first visible sign of leaf formation is a bulge on the flank of the shoot apical meristem. Bulging results from local relaxation of cell walls, which causes them to yield to internal hydrostatic pressure. By manipulation of tissue tension in combination with quantitative live imaging and finite-element modeling, we found that the slow-growing area at the shoot tip is substantially strain-stiffened compared with surrounding fast-growing tissue. We propose that strain stiffening limits growth, restricts organ bulging, and contributes to the meristem's functional zonation. Thus, mechanical signals are not just passive readouts of gene action but feed back on morphogenesis.
机译:尽管已经很好地确定了形态发生的遗传控制,但是复杂形状的修饰需要改变细胞的机械性能。在植物中,叶片形成的第一个可见迹象是茎尖分生组织侧面上的凸起。鼓胀起因于细胞壁的局部松弛,这导致它们屈服于内部静水压力。通过与定量实时成像和有限元建模相结合的组织张力操纵,我们发现与周围快速生长的组织相比,芽尖处的缓慢生长区域实质上被应变强化。我们提出,应变变硬会限制生长,限制器官膨胀,并有助于分生组织的功能区划。因此,机械信号不仅是基因作用的被动读数,而且还反馈形态发生。

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