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首页> 外文期刊>The Plant Cell >Differential Regulation of Cellulose Orientation at the Inner and Outer Face of Epidermal Cells in the Arabidopsis Hypocotyl
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Differential Regulation of Cellulose Orientation at the Inner and Outer Face of Epidermal Cells in the Arabidopsis Hypocotyl

机译:拟南芥下胚轴表皮细胞内外表面纤维素方向的差异调节

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It is generally believed that cell elongation is regulated by cortical microtubules, which guide the movement of cellulose synthase complexes as they secrete cellulose microfibrils into the periplasmic space. Transversely oriented microtubules are predicted to direct the deposition of a parallel array of microfibrils, thus generating a mechanically anisotropic cell wall that will favor elongation and prevent radial swelling. Thus far, support for this model has been most convincingly demonstrated in filamentous algae. We found that in etiolated Arabidopsis thaliana hypocotyls, microtubules and cellulose synthase trajectories are transversely oriented on the outer surface of the epidermis for only a short period during growth and that anisotropic growth continues after this transverse organization is lost. Our data support previous findings that the outer epidermal wall is polylamellate in structure, with little or no anisotropy. By contrast, we observed perfectly transverse microtubules and microfibrils at the inner face of the epidermis during all stages of cell expansion. Experimental perturbation of cortical microtubule organization preferentially at the inner face led to increased radial swelling. Our study highlights the previously underestimated complexity of cortical microtubule organization in the shoot epidermis and underscores a role for the inner tissues in the regulation of growth anisotropy.
机译:通常认为,细胞伸长是由皮质微管调节的,皮质微管在纤维素合酶复合物将纤维素微纤维分泌到周质空间中时指导纤维素合酶复合物的运动。预测横向取向的微管将引导平行排列的微原纤维阵列的沉积,从而产生机械各向异性的细胞壁,该壁有利于伸长并防止径向膨胀。迄今为止,在丝状藻类中最令人信服地证明了对该模型的支持。我们发现在黄化的拟南芥下胚轴中,微管和纤维素合酶的轨迹在表皮的外表面仅在生长过程中短时间横向定向,并且在失去这种横向组织后各向异性生长仍在继续。我们的数据支持以前的发现,即表皮外壁在结构上是多层薄板,几乎没有各向异性。相比之下,我们在细胞扩增的所有阶段都在表皮的内表面观察到了完美的横向微管和微纤维。皮质微管组织的实验扰动优先在内表面导致径向肿胀增加。我们的研究突出了先前被低估的芽表皮中皮质微管组织的复杂性,并强调了内部组织在调节生长各向异性中的作用。

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