Suppr超能文献

PATELLINS 是生长素介导的 PIN1 重定位和. 植物发育的调节剂。

PATELLINS are regulators of auxin-mediated PIN1 relocation and plant development in .

机构信息

Facultad de Recursos Naturales Renovables, Universidad Arturo Prat, 111093 Iquique, Chile.

Plant Molecular Biology Centre, Biology Department, Faculty of Sciences, Universidad de Chile, 7800024 Santiago, Chile.

出版信息

J Cell Sci. 2018 Jan 29;131(2):jcs204198. doi: 10.1242/jcs.204198.

Abstract

Coordinated cell polarization in developing tissues is a recurrent theme in multicellular organisms. In plants, a directional distribution of the plant hormone auxin is at the core of many developmental programs. A feedback regulation of auxin on the polarized localization of PIN auxin transporters in individual cells has been proposed as a self-organizing mechanism for coordinated tissue polarization, but the molecular mechanisms linking auxin signalling to PIN-dependent auxin transport remain unknown. We used a microarray-based approach to find regulators of the auxin-induced PIN relocation in root, and identified a subset of a family of phosphatidylinositol transfer proteins (PITPs), the PATELLINs (PATLs). Here, we show that are expressed in partially overlapping cell types in different tissues going through mitosis or initiating differentiation programs. PATLs are plasma membrane-associated proteins accumulated in embryos, primary roots, lateral root primordia and developing stomata. Higher order mutants display reduced PIN1 repolarization in response to auxin, shorter root apical meristem, and drastic defects in embryo and seedling development. This suggests that PATLs play a redundant and crucial role in polarity and patterning in .

摘要

在多细胞生物中,协调细胞极化是发育组织中的一个反复出现的主题。在植物中,植物激素生长素的定向分布是许多发育程序的核心。生长素对单个细胞中极性定位的 PIN 生长素转运蛋白的极化定位的反馈调节被提出作为协调组织极化的自组织机制,但将生长素信号与 PIN 依赖的生长素运输联系起来的分子机制仍然未知。我们使用基于微阵列的方法在根中找到了生长素诱导的 PIN 重定位的调节剂,并鉴定了一组磷酸肌醇转移蛋白(PITPs)的一部分,即 PATELLINs(PATLs)。在这里,我们表明,在经历有丝分裂或启动分化程序的不同组织中的部分重叠细胞类型中表达。PATLs 是与质膜相关的蛋白,在 胚胎、主根、侧根原基和发育中的气孔中积累。较高阶的 突变体对生长素的 PIN1 再极化反应减少,根尖分生组织变短,胚胎和幼苗发育严重缺陷。这表明 PATLs 在极性和模式形成中发挥冗余和关键作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验