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对遭受热胁迫的赤霞珠葡萄细胞进行定量蛋白质组分析,揭示了糖和苯丙烷类代谢的变化。

Quantitative proteomic analysis of cabernet sauvignon grape cells exposed to thermal stresses reveals alterations in sugar and phenylpropanoid metabolism.

作者信息

George Iniga S, Pascovici Dana, Mirzaei Mehdi, Haynes Paul A

机构信息

Department of Chemistry and Biomolecular Sciences, Macquarie University, North Ryde, Australia.

Australian Proteome Analysis Facility (APAF), Macquarie University, North Ryde, Australia.

出版信息

Proteomics. 2015 Sep;15(17):3048-60. doi: 10.1002/pmic.201400541. Epub 2015 Jun 15.

DOI:10.1002/pmic.201400541
PMID:25959233
Abstract

Grapes (Vitis vinifera) are a valuable fruit crop and wine production is a major industry. Global warming and expanded range of cultivation will expose grapes to more temperature stresses in future. Our study investigated protein level responses to abiotic stresses, with particular reference to proteomic changes induced by the impact of four different temperature stress regimes, including both hot and cold temperatures, on cultured grape cells. Cabernet Sauvignon cell suspension cultures grown at 26°C were subjected to 14 h of exposure to 34 and 42°C for heat stress, and 18 and 10°C for cold stress. Cells from the five temperatures were harvested in biological triplicates and label-free quantitative shotgun proteomic analysis was performed. A total of 2042 non-redundant proteins were identified from the five temperature points. Fifty-five proteins were only detected in extreme heat stress conditions (42°C) and 53 proteins were only detected at extreme cold stress conditions (10°C). Gene Ontology (GO) annotations of differentially expressed proteins provided insights into the metabolic pathways that are involved in temperature stress in grape cells. Sugar metabolism displayed switching between alternative and classical pathways during temperature stresses. Additionally, nine proteins involved in the phenylpropanoid pathway were greatly increased in abundance at extreme cold stress, and were thus found to be cold-responsive proteins. All MS data have been deposited in the ProteomeXchange with identifier PXD000977 (http://proteomecentral.proteomexchange.org/dataset/PXD000977).

摘要

葡萄(欧亚葡萄)是一种重要的水果作物,葡萄酒生产是一个主要产业。全球变暖和种植范围的扩大将使葡萄在未来面临更多的温度胁迫。我们的研究调查了蛋白质水平对非生物胁迫的反应,特别参考了四种不同温度胁迫模式(包括高温和低温)对培养的葡萄细胞的影响所诱导的蛋白质组变化。在26°C下生长的赤霞珠细胞悬浮培养物分别在34°C和42°C下热胁迫处理14小时,在18°C和10°C下冷胁迫处理。从五个温度下的细胞中进行三次生物学重复取样,并进行无标记定量鸟枪法蛋白质组分析。从五个温度点共鉴定出2042种非冗余蛋白质。55种蛋白质仅在极端热胁迫条件(42°C)下被检测到,53种蛋白质仅在极端冷胁迫条件(10°C)下被检测到。差异表达蛋白质的基因本体(GO)注释为葡萄细胞中参与温度胁迫的代谢途径提供了见解。在温度胁迫期间,糖代谢在替代途径和经典途径之间切换。此外,参与苯丙烷途径的九种蛋白质在极端冷胁迫下丰度大幅增加,因此被发现是冷响应蛋白。所有质谱数据已存入ProteomeXchange,标识符为PXD000977(http://proteomecentral.proteomexchange.org/dataset/PXD000977)。

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