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Uncharted routes: exploring the relevance of auxin movement via plasmodesmata

机译:未知的路线:通过Plasmodesmata探索植物管道运动的相关性

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摘要

Auxin is an endogenous small molecule with an incredibly large impact on growth and development in plants. Movement of auxin between cells, due to its negative charge at most physiological pHs, strongly relies on families of active transporters. These proteins import auxin from the extracellular space or export it into the same. Mutations in these components have profound impacts on biological processes. Another transport route available to auxin, once the substance is inside the cell, are plasmodesmata connections. These small channels connect the cytoplasms of neighbouring plant cells and enable flow between them. Interestingly, the biological significance of this latter mode of transport is only recently starting to emerge with examples from roots, hypocotyls and leaves. The existence of two transport systems provides opportunities for reciprocal cross-regulation. Indeed, auxin levels influence proteins controlling plasmodesmata permeability, while cell–cell communication affects auxin biosynthesis and transport. In an evolutionary context, transporter driven cell–cell auxin movement and plasmodesmata seem to have evolved around the same time in the green lineage. This highlights a co-existence from early on and a likely functional specificity of the systems. Exploring more situations where auxin movement via plasmodesmata has relevance for plant growth and development, and clarifying the regulation of such transport, will be key aspects in coming years.
机译:生长素是内源性小分子,对植物的生长和发育产生令人难以置信的巨大影响。由于其最具生理pHS的负电荷,细胞之间的运动,强烈依赖于活性转运蛋白的家庭。这些蛋白质从细胞外空间导入植物蛋白或将其输出到同一个方面。这些组分中的突变对生物过程产生了深远的影响。一旦物质进入细胞内,可以另一种可用的交通途径是PlasmodesMata连接。这些小通道连接相邻植物细胞的细胞质并在它们之间进行流动。有趣的是,这种运输方式的生物学意义才是最近从根,幼杆子和叶子中的实例开始出现。两种运输系统的存在提供了互惠交叉调节的机会。实际上,植物素水平影响蛋白质控制等离子体渗透性,而细胞 - 细胞通信会影响生长素生物合成和运输。在进化的背景下,运输扣驱动的细胞 - 细胞植物植物动作和Plasmodesmata似乎在绿色谱系中同时在同一时间内进化。这突出了早期的共存以及系统的可能功能特异性。通过PlasmodesMata探索更多情况,通过PlasmodesMata具有植物生长和发展的相关性,并澄清该运输的监管,将成为未来几年的关键方面。

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