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Phosphorylation-Mediated Dynamics of Nitrate Transceptor NRT1.1 Regulate Auxin Flux and Nitrate Signaling in Lateral Root Growth

机译:磷酸化介导的硝酸盐受体NRT1.1的动力学调节侧根生长中的生长素通量和硝酸盐信号传导。

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摘要

The dual-affinity nitrate transceptor NITRATE TRANSPORTER1.1 (NRT1.1) has two modes of transport and signaling, governed by Thr-101 (T101) phosphorylation. NRT1.1 regulates lateral root (LR) development by modulating nitrate-dependent basipetal auxin export and nitrate-mediated signal transduction. Here, using the Arabidopsis (Arabidopsis thaliana) NRT1.1T101D phosphomimetic and NRT1.1T101A nonphosphorylatable mutants, we found that the phosphorylation state of NRT1.1 plays a key role in NRT1.1 function during LR development. Single-particle tracking revealed that phosphorylation affected NRT1.1 spatiotemporal dynamics. The phosphomimetic NRT1.1T101D form showed fast lateral mobility and membrane partitioning that facilitated auxin flux under low-nitrate conditions. By contrast, nonphosphorylatable NRT1.1T101A showed low lateral mobility and oligomerized at the plasma membrane (PM), where it induced endocytosis via the clathrin-mediated endocytosis and microdomain-mediated endocytosis pathways under high-nitrate conditions. These behaviors promoted LR development by suppressing NRT1.1-controlled auxin transport on the PM and stimulating Ca2+-ARABIDOPSIS NITRATE REGULATED1 signaling from the endosome.
机译:双亲和力硝酸盐受体NITRATE TRANSPORTER1.1(NRT1.1)具有两种运输和信号传导方式,受Thr-101(T101)磷酸化作用控制。 NRT1.1通过调节依赖硝酸盐的基础植物生长素输出和硝酸盐介导的信号转导来调节侧根(LR)的发育。在这里,使用拟南芥NRT1.1 T101D 磷酸模拟和NRT1.1 T101A 不可磷酸化突变体,我们发现NRT1.1的磷酸化状态起关键作用在LR开发过程中使用NRT1.1功能。单粒子跟踪显示磷酸化影响NRT1.1时空动力学。拟磷酸化的NRT1.1 T101D 形式显示出快速的横向迁移率和膜分配,在低硝酸盐条件下促进了生长素通量。相比之下,不可磷酸化的NRT1.1 T101A 表现出较低的横向迁移率并在质膜(PM)处低聚,在高硝酸盐条件下它通过网格蛋白介导的内吞作用和微域介导的内吞作用途径诱导内吞作用。这些行为通过抑制NRT1.1控制的生长素在PM上的运输并刺激来自内体的Ca 2 + -硝化拟南芥REGULATED1信号来促进LR的发育。

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