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MdGRF11,一种苹果 14-3-3 蛋白,作为干旱和耐盐性的正调控因子。

MdGRF11, an apple 14-3-3 protein, acts as a positive regulator of drought and salt tolerance.

机构信息

National Key Laboratory of Crop Biology, MOA Key Laboratory of Horticultural Crop Biology and Germplasm Innovation, Shandong Collaborative Innovation Center of Fruit & Vegetable Quality and Efficient Production, College of Horticulture Science and Engineering, Shandong Agricultural University, Tai-An, Shandong 271018, China.

National Key Laboratory of Crop Biology, MOA Key Laboratory of Horticultural Crop Biology and Germplasm Innovation, Shandong Collaborative Innovation Center of Fruit & Vegetable Quality and Efficient Production, College of Horticulture Science and Engineering, Shandong Agricultural University, Tai-An, Shandong 271018, China.

出版信息

Plant Sci. 2019 Nov;288:110219. doi: 10.1016/j.plantsci.2019.110219. Epub 2019 Aug 14.

Abstract

The 14-3-3 proteins are a family of highly conserved phosphoserine-binding proteins that participate in the regulation of diverse physiological and developmental processes. In this research, twenty 14-3-3 genes in apples, which contained a highly conserved 14-3-3 domain, were identified and divided into two subgroups. Among them, MdGRF11 was further cloned and investigated. qRT-PCR analyses and GUS staining show that MdGRF11 is expressed in various organs and tissues with the highest expression levels found in the fruit. MdGRF11 was upregulated by polyethylene glycol 6000 (PEG 6000), NaCl, abscisic acid (ABA) and low temperature (4 °C) treatments. MdGRF11-overexpressing transgenic Arabidopsis and apple calli exhibited reduced sensitivity to salt and PEG 6000 treatments. Moreover, the ectopic expression of MdGRF11 improved the tolerance of transgenic tobacco to salt and drought stresses, which grew longer roots, underwent more growth, and presented higher chlorophyll levels than the wild-type control under salt and drought stress conditions. Furthermore, MdGRF11 expression remarkably reduced electrolyte leakage, malondialdehyde content levels, HO and O2- accumulation under salt and drought stress conditions, which relied on the regulation of ROS-scavenging signaling to reduce oxidative damage of cells after salt and drought stress treatment. MdGRF11 also enhanced tolerance to stress by upregulating expression levels of ROS-scavenging and stress-related genes, especially improving responses to drought stress by modifying the water loss rates and stomatal aperture. Moreover, MdGRF11 could interact with MdAREB/ABF transcription factors through yeast two hybrid analyses. In conclusion, our results indicate that MdGRF11 acts as a positive regulator of salt and drought stress responses through regulating ROS scavenging and other signaling systems.

摘要

14-3-3 蛋白是一组高度保守的磷酸丝氨酸结合蛋白,参与调节多种生理和发育过程。在这项研究中,从苹果中鉴定出了 20 个含有高度保守 14-3-3 结构域的 14-3-3 基因,并将其分为两个亚组。其中,进一步克隆和研究了 MdGRF11。qRT-PCR 分析和 GUS 染色表明,MdGRF11 在各种器官和组织中表达,在果实中表达量最高。MdGRF11 受聚乙二醇 6000(PEG 6000)、NaCl、脱落酸(ABA)和低温(4°C)处理的上调。MdGRF11 过表达转基因拟南芥和苹果愈伤组织对盐和 PEG 6000 处理的敏感性降低。此外,MdGRF11 的异位表达提高了转基因烟草对盐和干旱胁迫的耐受性,在盐和干旱胁迫条件下,转基因烟草的根更长,生长更多,叶绿素水平更高,而野生型对照则更低。此外,MdGRF11 表达显著降低了盐和干旱胁迫下的电解质渗漏、丙二醛含量水平、HO 和 O2-的积累,这依赖于 ROS 清除信号的调节,以减少盐和干旱胁迫处理后细胞的氧化损伤。MdGRF11 还通过上调 ROS 清除和应激相关基因的表达水平来增强对胁迫的耐受性,特别是通过改变水分损失率和气孔孔径来改善对干旱胁迫的响应。此外,MdGRF11 可以通过酵母双杂交分析与 MdAREB/ABF 转录因子相互作用。总之,我们的结果表明,MdGRF11 通过调节 ROS 清除和其他信号系统,作为盐和干旱胁迫反应的正调节剂发挥作用。

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