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根蛋白质组学揭示了钙(NO3)2胁迫下黄瓜 24-表油菜素内酯的响应。

Root proteomics reveals cucumber 24-epibrassinolide responses under Ca(NO3)2 stress.

机构信息

College of Horticulture, Nanjing Agriculture University, Nanjing, 210095, People's Republic of China.

Nanjing Agricultural University (Suqian) Academy of Protected Horticulture, Suqian, 223800, People's Republic of China.

出版信息

Plant Cell Rep. 2016 May;35(5):1081-101. doi: 10.1007/s00299-016-1940-z. Epub 2016 Mar 1.

Abstract

The application of exogenous 24-epibrassinolide promotes Brassinosteroids intracellular signalling in cucumber, which leads to differentially expressed proteins that participate in different life process to relieve Ca(NO 3 ) 2 damage. NO3 (-) and Ca(2+) are the main anion and cation of soil secondary salinization during greenhouse cultivation. Brassinosteroids (BRs), steroidal phytohormones, regulate various important physiological and developmental processes and are used against abiotic stress. A two-dimensional electrophoresis gel coupled with MALDI-TOF/TOF MS was performed to investigate the effects of exogenous 24-epibrassinolide (EBL) on proteomic changes in cucumber seedling roots under Ca(NO3)2 stress. A total of 80 differentially accumulated protein spots in response to stress and/or exogenous EBL were identified and grouped into different categories of biological processes according to Gene Ontology. Under Ca(NO3)2 stress, proteins related to nitrogen metabolism and lignin biosynthesis were induced, while those related to cytoskeleton organization and cell-wall neutral sugar metabolism were inhibited. However, the accumulation of abundant proteins involved in protein modification and degradation, defence mechanisms against antioxidation and detoxification and lignin biosynthesis by exogenous EBL might play important roles in salt tolerance. Real-time quantitative PCR was performed to investigate BR signalling. BR signalling was induced intracellularly under Ca(NO3)2 stress. Exogenous EBL can alleviate the root indices, effectively reduce the Ca(2+) content and increase the K(+) content in cucumber roots under Ca(NO3)2 stress. This study revealed the differentially expressed proteins and BR signalling-associated mRNAs induced by EBL in cucumber seedling roots under Ca(NO3)2 stress, providing a better understanding of EBL-induced salt resistance in cucumber seedlings. The mechanism for alleviation provides valuable insight into improving Ca(NO3)2 stress tolerance of other horticultural plants.

摘要

外源 24-表油菜素内酯的应用促进了黄瓜中的油菜素内酯细胞内信号转导,导致参与不同生命过程的差异表达蛋白缓解 Ca(NO3)2 损伤。NO3(-)和 Ca(2+)是温室栽培过程中土壤次生盐渍化的主要阴离子和阳离子。油菜素内酯(BRs)是甾体植物激素,调节各种重要的生理和发育过程,并用于应对非生物胁迫。采用二维电泳凝胶结合 MALDI-TOF/TOF MS 研究了外源 24-表油菜素内酯(EBL)对 Ca(NO3)2 胁迫下黄瓜幼苗根系蛋白质组变化的影响。共鉴定出 80 个对胁迫和/或外源 EBL 有差异积累的蛋白点,并根据基因本体论(GO)将其分为不同的生物过程类别。在 Ca(NO3)2 胁迫下,与氮代谢和木质素生物合成相关的蛋白质被诱导,而与细胞骨架组织和细胞壁中性糖代谢相关的蛋白质被抑制。然而,外源 EBL 积累大量与蛋白质修饰和降解、抗氧化和解毒防御机制以及木质素生物合成相关的丰富蛋白可能在耐盐性中发挥重要作用。实时定量 PCR 用于研究 BR 信号转导。在 Ca(NO3)2 胁迫下,细胞内诱导 BR 信号转导。外源 EBL 可缓解根指数,有效降低 Ca(NO3)2 胁迫下黄瓜根系中的 Ca(2+)含量,增加 K(+)含量。本研究揭示了 EBL 在 Ca(NO3)2 胁迫下诱导黄瓜幼苗根系差异表达蛋白和 BR 信号转导相关 mRNA,为更好地理解 EBL 诱导黄瓜幼苗的耐盐性提供了依据。该缓解机制为提高其他园艺植物对 Ca(NO3)2 胁迫的耐受性提供了有价值的见解。

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