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A receptor-like kinase mutant with absent endodermal diffusion barrier displays selective nutrient homeostasis defects

机译:缺乏内胚层扩散屏障的受体样激酶突变体显示选择性营养稳态失衡

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摘要

The endodermis represents the main barrier to extracellular diffusion in plant roots, and it is central to current models of plant nutrient uptake. Despite this, little is known about the genes setting up this endodermal barrier. In this study, we report the identification and characterization of a strong barrier mutant, schengen3 (sgn3). We observe a surprising ability of the mutant to maintain nutrient homeostasis, but demonstrate a major defect in maintaining sufficient levels of the macronutrient potassium. We show that SGN3/GASSHO1 is a receptor-like kinase that is necessary for localizing CASPARIAN STRIP DOMAIN PROTEINS (CASPs)—major players of endodermal differentiation—into an uninterrupted, ring-like domain. SGN3 appears to localize into a broader band, embedding growing CASP microdomains. The discovery of SGN3 strongly advances our ability to interrogate mechanisms of plant nutrient homeostasis and provides a novel actor for localized microdomain formation at the endodermal plasma membrane.>DOI:
机译:内胚层代表了阻止植物根部细胞外扩散的主要障碍,并且对于当前植物养分吸收模型至关重要。尽管如此,对建立这种内胚层屏障的基因知之甚少。在这项研究中,我们报告了一个强屏障突变体schengen3(sgn3)的鉴定和表征。我们观察到突变体维持营养稳态的惊人能力,但证明在维持足够水平的大量营养钾方面存在重大缺陷。我们显示,SGN3 / GASSHO1是一种受体样激酶,对于将CASPARIAN STRIP域蛋白(CASPs)(内胚层分化的主要参与者)定位到不间断的环状域中是必需的。 SGN3似乎定位于一个更宽的频带,嵌入了不断增长的CASP微域。 SGN3的发现极大地提高了我们探究植物营养稳态的机制的能力,并为内胚层质膜上局部微结构域形成提供了新的参与者。> DOI:

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