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Dirigent domain-containing protein is part of the machinery required for formation of the lignin-based Casparian strip in the root

机译:含有异源域的蛋白质是在根部形成基于木质素的里海带的必要机制的一部分

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摘要

The endodermis acts as a “second skin” in plant roots by providing the cellular control necessary for the selective entry of water and solutes into the vascular system. To enable such control, Casparian strips span the cell wall of adjacent endodermal cells to form a tight junction that blocks extracellular diffusion across the endodermis. This junction is composed of lignin that is polymerized by oxidative coupling of monolignols through the action of a NADPH oxidase and peroxidases. Casparian strip domain proteins (CASPs) correctly position this biosynthetic machinery by forming a protein scaffold in the plasma membrane at the site where the Casparian strip forms. Here, we show that the dirigent-domain containing protein, enhanced suberin1 (ESB1), is part of this machinery, playing an essential role in the correct formation of Casparian strips. ESB1 is localized to Casparian strips in a CASP-dependent manner, and in the absence of ESB1, disordered and defective Casparian strips are formed. In addition, loss of ESB1 disrupts the localization of the CASP1 protein at the casparian strip domain, suggesting a reciprocal requirement for both ESB1 and CASPs in forming the casparian strip domain
机译:内胚层通过提供必要的细胞控制,使水和溶质选择性进入血管系统,从而在植物根部充当“第二层皮肤”。为了实现这种控制,里海带跨越了相邻内胚层细胞的细胞壁,形成了紧密的连接,从而阻止了细胞外扩散穿过内胚层。该连接由木质素组成,木质素通过NADPH氧化酶和过氧化物酶的作用通过单木酚的氧化偶联而聚合。里海带状结构域蛋白(CASP)通过在里海带形成部位的质膜中形成蛋白质支架,从而正确地定位了这种生物合成机制。在这里,我们显示了包含蛋白结构域的蛋白质,增强的suberin1(ESB1),是此机制的一部分,在里海带的正确形成中起着至关重要的作用。 ESB1以CASP依赖的方式定位在里海带上,在没有ESB1的情况下,会形成无序和有缺陷的里海带。此外,ESB1的丢失会破坏CASP1蛋白在里海带状结构域中的定位,这提示在形成里海带状结构域中,ESB1和CASP相互对应

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