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The endodermis-development and differentiation of the plant's inner skin

机译:植物内皮的内胚层发育和分化

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Controlling external compound entrance is essential for plant survival. To set up an efficient and selective sorting of nutrients, free diffusion via the apoplast in vascular plants is blocked at the level of the endodermis. Although we have learned a lot about endodermal specification in the last years, information regarding its differentiation is still very limited. A differentiated endodermal cell can be defined by the presence of the "Casparian strip" (CS), a cell wall modification described first by Robert Caspary in 1865. While the anatomical description of CS in many vascular plants has been very detailed, we still lack molecular information about the establishment of the Casparian strips and their actual function in roots. The recent isolation of a novel protein family, the CASPs, that localizes precisely to a domain of the plasma membrane underneath the CS represents an excellent point of entry to explore CS function and formation. In addition, it has been shown that the endodermis contains transporters that are localized to either the central (stele-facing) or peripheral (soil-facing) plasma membranes. These features suggest that the endodermis functions as a polar plant epithelium.
机译:控制外部化合物的进入对植物的生存至关重要。为了建立营养的有效和选择性分选,在血管内层水平处阻止了通过质外体在维管植物中的自由扩散。尽管最近几年我们了解到很多关于内胚层规格的信息,但是关于其内在分化的信息仍然非常有限。分化的内胚层细胞可以通过“里海带”(CS)的存在来定义,“里海带”是罗伯特·卡斯帕里于1865年首先描述的细胞壁修饰形式。关于里海带的建立及其在根中的实际功能的分子信息。新型蛋白质家族CASP的最新分离,恰好定位于CS下方质膜的结构域,代表了探索CS功能和形成的绝佳切入点。另外,已经表明,内胚层包含转运蛋白,其定位于中央(面向甾体的)或外围(面向土壤的)质膜。这些特征表明,内胚层起着极性植物上皮的作用。

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