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首页> 外文期刊>Frontiers in Plant Science >Proteomic Analysis of Differentially Accumulated Proteins in Cucumber ( Cucumis sativus) Fruit Peel in Response to Pre-storage Cold Acclimation
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Proteomic Analysis of Differentially Accumulated Proteins in Cucumber ( Cucumis sativus) Fruit Peel in Response to Pre-storage Cold Acclimation

机译:贮藏冷适应后黄瓜果皮中差异累积蛋白质的蛋白质组学分析

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Harvested fruits are still living organs and respond to environmental stimuli. Low temperature storage is effective in extending life of harvested fruit, but it may also cause chilling injury. Cold acclimation has been shown to induce chilling tolerance in plants, but what proteomic changes caused by cold acclimation are related to defense against chilling stress remains largely unclear. Here, 3 d of pre-storage cold acclimation (PsCA) at 10°C reduced chilling injury and secondary disease severity in cucumber stored at 5°C by 51 and 94%, respectively, compared with the control which was directly stored at 5°C. Proteomic analysis of cucumber peel identified 21 significant differentially-accumulated proteins (SDAPs) right after PsCA treatment and 23 after the following cold storage (PsCA+CS). These proteins are mainly related to stress response and defense (SRD), energy metabolism, protein metabolism, signal transduction, primary metabolism, and transcription. The SRD proteins, which made up 37% of the 21 and 47% of the 23, respectively, represented the largest class of SDAPs, and all but one protein were up-regulated, suggesting accumulation of proteins involved in defense response is central feature of proteomic profile changes brought about by PsCA. In fruit just after PsCA treatment, the identified SDAPs are related to responses to various stresses, including chilling, salt stress, dehydration, fungi, bacteria, insects, and DNA damage. However, after prolonged cold storage, the targeted proteins in acclimated fruit were narrowed down in scope to those involved in defense against chilling and pathogens. The change patterns at the transcription level of the majority of the up-regulated differentially-accumulated proteins were highly consistent with those at protein level. Taken all, the results suggest that the short-time cold acclimation initiated comprehensive defense responses in cucumber fruit at first, while the long term storage thereafter altered the responses more specifically to chilling. These findings add to the understanding of plants' molecular responses to cold acclimation.
机译:收获的果实仍是活的器官,对环境刺激有反应。低温储存可有效延长收获水果的寿命,但也可能引起冰冻伤害。已经证明冷驯化可以诱导植物对冷的耐受性,但是由冷驯化引起的蛋白质组变化与防御冷胁迫的关系还不清楚。在此,在10°C下进行3天的储藏前冷驯化(PsCA),与直接在5°C下储存的对照相比,在5°C下储存的黄瓜的冷害和继发性疾病严重程度分别降低了51%和94% C。黄瓜皮的蛋白质组学分析鉴定出,在PsCA处理后立即鉴定出21种显着差异累积蛋白(SDAP),在随后的冷藏(PsCA + CS)之后鉴定出23种。这些蛋白质主要与应激反应和防御(SRD),能量代谢,蛋白质代谢,信号转导,初级代谢和转录有关。 SRD蛋白分别占21个蛋白中的37%和23个蛋白中的47%,代表了最大的SDAP类,除一种蛋白外,所有蛋白均被上调,这表明参与防御反应的蛋白的积累是该蛋白的主要特征。 PsCA引起的蛋白质组学变化。在刚进行PsCA处理后的水果中,已鉴定出的SDAP与对各种胁迫的反应有关,包括寒冷,盐胁迫,脱水,真菌,细菌,昆虫和DNA损伤。然而,在长时间的冷藏后,适应气候变化的水果中的目标蛋白质的范围缩小到了与防御寒冷和病原体有关的蛋白质。大多数上调的差异积累蛋白质在转录水平上的变化模式与蛋白质水平上的变化模式高度一致。总而言之,结果表明,短期的冷适应首先会引发黄瓜果实的综合防御反应,而长期的储存之后会更具体地改变对冷藏的反应。这些发现增加了对植物对冷驯化的分子反应的理解。

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