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Differential regulation of dehydrin expression and trehalose levels in Cardinal table grape skin by low temperature and high CO2

机译:低温和高CO2对基层葡萄皮中脱水蛋白表达和海藻糖水平的差异调节

摘要

© 2015 Elsevier GmbH. Dehydrins and trehalose are multifunctional protective biomolecules that play a role in counteracting cellular damage during dehydrative stresses. In this paper, we studied dehydrin isoform patterns, dehydrin gene expression and trehalose levels in the skin of Cardinal (Vitis vinifera L.) table grapes, along with their regulation by different cold postharvest storage conditions. Immunoanalysis with K-segment antibody recognizes four constitutive dehydrins (from 17 to 44kDa) that are tightly regulated by low temperature and high CO2. Phosphatase treatment showed that DHN44 and DHN22 isoforms are phosphorylated polypeptides, while MALDI-TOF MS and MS/MS analysis suggested that 44kDa polypeptide may be a dehydrin homodimer. At the transcriptional level, dehydrins are also regulated by low temperature and high CO2, showing a fairly good correlation with their mRNA levels. Trehalose was quantified by high performance anion-exchange chromatography with pulsed amperometric detection (HPAEC-PAD), revealing a progressive increase of this metabolite throughout storage at 0°C and the sudden transitory increases in short-term high CO2-treated fruit. We propose that the constitutive presence and up-regulation of dehydrins and trehalose during low temperature postharvest storage could be positively correlated with the relative chilling tolerance of table grapes and the adaptive responses activated by high CO2 levels to preserve cell water status and to counteract the disruption of physiological processes during cold storage.
机译:©2015 Elsevier GmbH。脱水蛋白和海藻糖是多功能的保护性生物分子,在脱水应激中起着抵消细胞损伤的作用。在本文中,我们研究了红葡萄酒(Vitis vinifera L.)鲜食葡萄皮中的脱水素同工型模式,脱水素基因表达和海藻糖水平,以及它们在不同的冷藏后贮藏条件下的调节作用。用K段抗体进行的免疫分析可识别四种组成型脱水蛋白(从17至44kDa),它们受到低温和高CO2的严格调控。磷酸酶处理表明DHN44和DHN22同工型是磷酸化的多肽,而MALDI-TOF MS和MS / MS分析表明44kDa多肽可能是脱水素同型二聚体。在转录水平上,脱水素还受低温和高CO2的调节,显示出与其mRNA水平相当好的相关性。海藻糖通过高效阴离子交换色谱和脉冲安培检测(HPAEC-PAD)进行定量,揭示了该代谢产物在0°C下整个存储过程中的逐渐增加,而短期高CO2处理的水果突然增加。我们认为低温贮藏后脱水过程中脱水醇和海藻糖的组成性存在和上调可能与鲜食葡萄的相对耐寒性以及高CO2浓度激活的适应性反应呈正相关,以保持细胞水状态并抵消破坏冷藏过程中的生理过程。

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