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A mechanically sensitive cell layer regulates the physical properties of the Arabidopsis seed coat

机译:机械敏感的细胞层调节拟南芥种皮的物理性质

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Endogenous mechanical stresses regulate plant growth and development. Tensile stress in epidermal cells affects microtubule reorientation and anisotropic cell wall deposition, and mechanical stimulus at the meristem regulates trafficking and polar localization of auxin transporters. However, the mechanical regulation of other plant growth regulators has not been demonstrated. Here we propose that during seed growth, mechanical stress exerted by the expanding embryo and endosperm is perceived by a specific mechanosensitive cell layer in the seed coat. We show that the adaxial epidermis of the outer integument thickens its cell wall in a mechanosensitive fashion, demonstrates microtubule dynamics consistent with mechanical stress perception and shows mechanosensitive expression of ELA1, a regulator of seed size and gibberellic acid (GA) metabolism. By exploiting physical and genetic compartmentalization, and combining genetic and surgical techniques, we propose a mechanistic link between mechanical stress and GA accumulation that regulates seed development.
机译:内源性机械压力调节植物的生长和发育。表皮细胞中的拉伸应力影响微管的重新定向和各向异性的细胞壁沉积,分生组织上的机械刺激调节生长素转运蛋白的运输和极性定位。但是,尚未证明其他植物生长调节剂的机械调节作用。在这里,我们建议在种子生长过程中,由种皮中特定的机械敏感细胞层感知到正在膨胀的胚和胚乳所施加的机械应力。我们显示外被膜的近端表皮以机械敏感性方式增厚其细胞壁,显示出与机械应力感知一致的微管动力学,并显示出ELA1(种子大小和赤霉素(GA)代谢的调节剂)的机械敏感性表达。通过利用物理和基因区室划分,并结合遗传和外科技术,我们提出了机械应力与GA积累之间的机制联系,以调节种子的发育。

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