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来自球兰的脱水和 ABA 诱导的萌发相关蛋白 CpGLP1 具有 SOD 活性,可能有助于脱水过程中细胞壁的完整性。

The dehydration- and ABA-inducible germin-like protein CpGLP1 from Craterostigma plantagineum has SOD activity and may contribute to cell wall integrity during desiccation.

机构信息

Institute of Molecular Physiology and Biotechnology of Plants (IMBIO), University of Bonn, Kirschallee 1, 53115, Bonn, Germany.

Department of Genomics and Biology of Fruit Crops, Research and Innovation Centre, Fondazione Edmund Mach, San Michele all'Adige, Italy.

出版信息

Planta. 2020 Oct 12;252(5):84. doi: 10.1007/s00425-020-03485-0.

Abstract

CpGLP1 belongs to the large group of germin-like proteins and comprises a cell wall-localized protein which has superoxide dismutase activity and may contribute towards ROS metabolism and cell wall folding during desiccation. The plant cell wall is a dynamic matrix and its plasticity is essential for cell growth and processing of environmental signals to cope with stresses. A few so-called resurrection plants like Craterostigma plantagineum survive desiccation by implementing protection mechanisms. In C. plantagineum, the cell wall shrinks and folds upon desiccation to avoid mechanical and oxidative damage which contributes to cell integrity. Despite the high toxic potential, ROS are important molecules for cell wall remodeling processes as they participate in enzymatic reactions and act as signaling molecules. Here we analyzed the C. plantagineum germin-like protein 1 (CpGLP1) to understand its contribution to cell wall folding and desiccation tolerance. The analysis of the CpGLP1 sequence showed that this protein does not fit into the current GLP classification and forms a new group within the Linderniaceae. CpGLP1 transcripts accumulate in leaves in response to dehydration and ABA, and mannitol treatments transiently induce CpGLP1 transcript accumulation supporting the participation of CpGLP1 in desiccation-related processes. CpGLP1 protein from cell wall protein extracts followed transcript accumulation and protein preparations from bacteria overexpressing CpGLP1 showed SOD activity. In agreement with cell wall localization, CpGLP1 interacts with pectins which have not been reported for GLP proteins. Our data support a role for CpGLP1 in the ROS metabolism related to the control of cell wall plasticity during desiccation in C. plantagineum.

摘要

CpGLP1 属于类胚蛋白大家族,由一种定位于细胞壁的蛋白组成,具有超氧化物歧化酶活性,可能有助于 ROS 代谢和细胞壁在干燥过程中的折叠。植物细胞壁是一个动态基质,其可塑性对于细胞生长和处理环境信号以应对压力至关重要。一些所谓的复苏植物,如 Craterostigma plantagineum,通过实施保护机制来耐受干燥。在 C. plantagineum 中,细胞壁在干燥时收缩和折叠,以避免机械和氧化损伤,从而有助于保持细胞完整性。尽管 ROS 具有很高的毒性潜力,但它们是细胞壁重塑过程中的重要分子,因为它们参与酶反应并作为信号分子发挥作用。在这里,我们分析了 C. plantagineum 类胚蛋白 1(CpGLP1),以了解其对细胞壁折叠和干燥耐受性的贡献。CpGLP1 序列的分析表明,该蛋白不符合当前 GLP 的分类,而是在 Linderniaceae 内形成了一个新的组。CpGLP1 转录本在叶片中响应脱水、ABA 和甘露醇处理而积累,瞬时诱导 CpGLP1 转录本积累,支持 CpGLP1 参与干燥相关过程。细胞壁蛋白提取物中的 CpGLP1 蛋白紧随转录本积累,过表达 CpGLP1 的细菌蛋白制剂显示 SOD 活性。与细胞壁定位一致,CpGLP1 与果胶相互作用,而 GLP 蛋白尚未报道与果胶相互作用。我们的数据支持 CpGLP1 在与控制干燥过程中细胞壁可塑性相关的 ROS 代谢中的作用在 C. plantagineum 中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e12/7550295/e00556201678/425_2020_3485_Fig1_HTML.jpg

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