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Insights into the Mechanisms Underlying Boron Homeostasis in Plants

机译:深入了解植物体内硼稳态的机制

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摘要

Boron is an essential element for plants but is toxic in excess. Therefore, plants must adapt to both limiting and excess boron conditions for normal growth. Boron transport in plants is primarily based on three transport mechanisms across the plasma membrane: passive diffusion of boric acid, facilitated diffusion of boric acid via channels, and export of borate anion via transporters. Under boron -limiting conditions, boric acid channels and borate exporters function in the uptake and translocation of boron to support growth of various plant species. In Arabidopsis thaliana, NIP5;1 and BOR1 are located in the plasma membrane and polarized toward soil and stele, respectively, in various root cells, for efficient transport of boron from the soil to the stele. Importantly, sufficient levels of boron induce downregulation of NIP5;1 and BOR1 through mRNA degradation and proteolysis through endocytosis, respectively. In addition, borate exporters, such as Arabidopsis BOR4 and barley Bot1, function in boron exclusion from tissues and cells under conditions of excess boron. Thus, plants actively regulate intracellular localization and abundance of transport proteins to maintain boron homeostasis. In this review, the physiological roles and regulatory mechanisms of intracellular localization and abundance of boron transport proteins are discussed.
机译:硼是植物必不可少的元素,但有毒。因此,植物必须适应限制硼和过量硼的条件才能正常生长。植物中的硼运输主要基于跨质膜的三种运输机制:硼酸的被动扩散,促进硼酸通过通道的扩散以及硼酸根阴离子通过转运蛋白的输出。在限制硼的条件下,硼酸通道和硼酸盐出口商在硼的吸收和转运中发挥作用,以支持各种植物的生长。在拟南芥中,NIP5; 1和BOR1位于质膜中,并在各种根细胞中分别向土壤和碑石极化,以有效地将硼从土壤运到碑石。重要的是,足够水平的硼分别通过mRNA降解和内吞作用引起的蛋白水解分别诱导NIP5; 1和BOR1的下调。此外,硼酸盐出口者,如拟南芥BOR4和大麦Bot1,在过量硼的条件下从组织和细胞中排除硼。因此,植物主动调节细胞内的定位和转运蛋白的丰度,以维持硼稳态。在这篇综述中,讨论了细胞内定位和硼转运蛋白丰度的生理作用和调控机制。

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