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拟南芥中的 P 蛋白是参与快速筛管封闭的异源二聚体结构。

P-proteins in Arabidopsis are heteromeric structures involved in rapid sieve tube sealing.

机构信息

Fraunhofer Institute for Molecular Biology and Applied Ecology, Münster Germany.

出版信息

Front Plant Sci. 2013 Jul 3;4:225. doi: 10.3389/fpls.2013.00225. eCollection 2013.

Abstract

Structural phloem proteins (P-proteins) are characteristic components of the sieve elements in all dicotyledonous and many monocotyledonous angiosperms. Tobacco P-proteins were recently confirmed to be encoded by the widespread sieve element occlusion (SEO) gene family, and tobacco SEO proteins were shown to be directly involved in sieve tube sealing thus preventing the loss of photosynthate. Analysis of the two Arabidopsis SEO proteins (AtSEOa and AtSEOb) indicated that the corresponding P-protein subunits do not act in a redundant manner. However, there are still pending questions regarding the interaction properties and specific functions of AtSEOa and AtSEOb as well as the general function of structural P-proteins in Arabidopsis. In this study, we characterized the Arabidopsis P-proteins in more detail. We used in planta bimolecular fluorescence complementation assays to confirm the predicted heteromeric interactions between AtSEOa and AtSEOb. Arabidopsis mutants depleted for one or both AtSEO proteins lacked the typical P-protein structures normally found in sieve elements, underlining the identity of AtSEO proteins as P-proteins and furthermore providing the means to determine the role of Arabidopsis P-proteins in sieve tube sealing. We therefore developed an assay based on phloem exudation. Mutants with reduced AtSEO expression levels lost twice as much photosynthate following injury as comparable wild-type plants, confirming that Arabidopsis P-proteins are indeed involved in sieve tube sealing.

摘要

结构韧皮蛋白(P-蛋白)是所有双子叶植物和许多单子叶被子植物筛管中的特征成分。最近证实,烟草 P-蛋白是由广泛存在的筛管阻塞(SEO)基因家族编码的,烟草 SEO 蛋白被证明直接参与筛管封闭,从而防止光合作用产物的损失。对拟南芥中的两个 SEO 蛋白(AtSEOa 和 AtSEOb)进行分析表明,相应的 P-蛋白亚基不会以冗余的方式发挥作用。然而,关于 AtSEOa 和 AtSEOb 的相互作用特性和特定功能以及结构 P-蛋白在拟南芥中的一般功能,仍有悬而未决的问题。在这项研究中,我们更详细地研究了拟南芥 P-蛋白。我们使用体内双分子荧光互补测定来确认 AtSEOa 和 AtSEOb 之间预测的异源相互作用。一个或两个 AtSEO 蛋白缺失的拟南芥突变体缺乏通常在筛管中发现的典型 P-蛋白结构,这强调了 AtSEO 蛋白作为 P-蛋白的身份,并且进一步提供了确定拟南芥 P-蛋白在筛管封闭中的作用的手段。因此,我们开发了一种基于韧皮部渗出物的测定方法。与可比的野生型植物相比,表达水平降低的 AtSEO 突变体在受伤后损失的光合作用产物多了一倍,这证实了拟南芥 P-蛋白确实参与了筛管封闭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/322b/3700381/73b95c62dc74/fpls-04-00225-g001.jpg

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