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首页> 外文期刊>Plant physiology >Proteomic study of low-temperature responses in strawberry cultivars (Fragaria × ananassa) that differ in cold tolerance
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Proteomic study of low-temperature responses in strawberry cultivars (Fragaria × ananassa) that differ in cold tolerance

机译:耐寒性不同的草莓品种(Fragaria×ananassa)低温响应的蛋白质组学研究

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摘要

To gain insight into the molecular basis contributing to overwintering hardiness, a comprehensive proteomic analysis comparing crowns of octoploid strawberry (Fragaria × ananassa) cultivars that differ in freezing tolerance was conducted. Four cultivars were examined for freeze tolerance and the most cold-tolerant cultivar ('Jonsok') and least-tolerant cultivar ('Frida') were compared with a goal to reveal how freezing tolerance is achieved in this distinctive overwintering structure and to identify potential cold-tolerance-associated biomarkers. Supported by univariate and multivariate analysis, a total of 63 spots from two-dimensional electrophoresis analysis and 135 proteins from label-free quantitative proteomics were identified as significantly differentially expressed in crown tissue from the two strawberry cultivars exposed to 0-, 2-, and 42-d cold treatment. Proteins identified as cold-tolerance-associated included molecular chaperones, antioxidants/detoxifying enzymes, metabolic enzymes, pathogenesis-related proteins, and flavonoid pathway proteins. A number of proteins were newly identified as associated with cold tolerance. Distinctive mechanisms for cold tolerance were characterized for two cultivars. In particular, the 'Frida' cold response emphasized proteins specific to flavonoid biosynthesis, while the more freezing-tolerant 'Jonsok' had a more comprehensive suite of known stress-responsive proteins including those involved in antioxidation, detoxification, and disease resistance. The molecular basis for 'Jonsok'-enhanced cold tolerance can be explained by the constitutive level of a number of proteins that provide a physiological stress-tolerant poise.
机译:为了深入了解有助于越冬坚韧性的分子基础,进行了综合蛋白质组学分析,比较了抗冻性不同的八倍体草莓(Fragaria×ananassa)品种的冠。检查了四个品种的耐冻性,比较了最耐寒的品种(“ Jonsok”)和最不耐寒的品种(“ Frida”),目的是揭示如何在这种独特的越冬结构中实现耐冻性并确定潜在的耐寒相关的生物标志物。在单变量和多变量分析的支持下,二维电泳分析中共有63个斑点和无标记定量蛋白质组学中的135个蛋白质被鉴定为在暴露于0、2和2的两个草莓品种的冠冠组织中差异显着。 42 d冷处理。被鉴定为与耐寒性相关的蛋白质包括分子伴侣,抗氧化剂/排毒酶,代谢酶,与发病相关的蛋白质和类黄酮途径蛋白质。新发现许多蛋白质与耐寒性有关。鉴定了两个品种的耐寒性的独特机制。特别是,“ Frida”冷应答强调了类黄酮生物合成所特有的蛋白质,而更耐冷冻的“ Jonsok”则具有更全面的已知应激反应蛋白,包括涉及抗氧化,解毒和抗病性的蛋白。 “ Jonsok”增强的耐寒性的分子基础可以通过提供生理上耐胁迫的多种蛋白质的本构水平来解释。

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