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拟南芥血管复杂性和连通性控制 PIN 形态蛋白 1 的动力学和胚胎发生过程中的侧脉模式。

Arabidopsis vascular complexity and connectivity controls PIN-FORMED1 dynamics and lateral vein patterning during embryogenesis.

机构信息

Department of Botany, University of Wisconsin-Madison, Madison, WI 53706, USA.

Center for Quantitative Cell Imaging, University of Wisconsin-Madison, Madison, WI 53706, USA.

出版信息

Development. 2021 Jul 1;148(14). doi: 10.1242/dev.197210. Epub 2021 Jul 12.

Abstract

Arabidopsis VASCULATURE COMPLEXITY AND CONNECTIVITY (VCC) is a plant-specific transmembrane protein that controls the development of veins in cotyledons. Here, we show that the expression and localization of the auxin efflux carrier PIN-FORMED1 (PIN1) is altered in vcc developing cotyledons and that overexpression of PIN1-GFP partially rescues vascular defects of vcc in a dosage-dependent manner. Genetic analyses suggest that VCC and PINOID (PID), a kinase that regulates PIN1 polarity, are both required for PIN1-mediated control of vasculature development. VCC expression is upregulated by auxin, likely as part of a positive feedback loop for the progression of vascular development. VCC and PIN1 localized to the plasma membrane in pre-procambial cells but were actively redirected to vacuoles in procambial cells for degradation. In the vcc mutant, PIN1 failed to properly polarize in pre-procambial cells during the formation of basal strands, and instead, it was prematurely degraded in vacuoles. VCC plays a role in the localization and stability of PIN1, which is crucial for the transition of pre-procambial cells into procambial cells that are involved in the formation of basal lateral strands in embryonic cotyledons.

摘要

拟南芥维管束复杂性和连通性(VCC)是一种植物特异性的跨膜蛋白,它控制子叶叶脉的发育。在这里,我们表明生长素外排载体 PIN 形成蛋白 1(PIN1)的表达和定位在 vcc 发育中的子叶中发生改变,并且过量表达 PIN1-GFP 以剂量依赖的方式部分挽救了 vcc 的血管缺陷。遗传分析表明,VCC 和 PINOID(PID),一种调节 PIN1 极性的激酶,都是 PIN1 介导的血管发育控制所必需的。VCC 的表达受生长素的上调,可能是血管发育进程的正反馈回路的一部分。VCC 和 PIN1 在原形成层细胞中定位于质膜,但在原形成层细胞中被主动重定向到液泡进行降解。在 vcc 突变体中,PIN1 在基部链形成过程中未能在原形成层细胞中正确极化,而是过早地在液泡中降解。VCC 在 PIN1 的定位和稳定性中发挥作用,这对于原形成层细胞向参与形成胚胎子叶基部横向链的原形成层细胞的转化至关重要。

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