首页> 外文OA文献 >Deciphering the Role of CBF/DREB Transcription Factors and Dehydrins in Maintaining the Quality of Table Grapes cv. Autumn Royal Treated with High CO2 Levels and Stored at 0°C
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Deciphering the Role of CBF/DREB Transcription Factors and Dehydrins in Maintaining the Quality of Table Grapes cv. Autumn Royal Treated with High CO2 Levels and Stored at 0°C

机译:了解CBF / DREB转录因子和脱水素在维持食用葡萄品质中的作用。秋季皇家大瓶装,高二氧化碳含量且在0°C储存

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摘要

C-repeat/dehydration-responsive element binding factors (CBF/DREB) are transcription factors which play a role in improving plant cold stress resistance and recognize the DRE/CRT element in the promoter of a set of cold regulated genes. Dehydrins (DHNs) are proteins that accumulate in plants in response to cold stress, which present, in some cases, CBF/DREB recognition sequences in their promoters and are activated by members of this transcription factor family. The application of a 3-day gaseous treatment with 20 kPa CO2 at 0∘C to table grapes cv. Autumn Royal maintained the quality of the bunches during postharvest storage at 0∘C, reducing weight loss and rachis browning. In order to determine the role of CBF/DREB genes in the beneficial effect of the gaseous treatment by regulating DHNs, we have analyzed the gene expression pattern of three VviDREBA1s (VviDREBA1-1, VviDREBA1-6, and VviDREBA1-7) as well as three VviDHNs (VviDHN1a, VviDHN2, and VviDHN4), in both alternative splicing forms. Results showed that the differences in VviDREBA1s expression were tissue and atmosphere composition dependent, although the application of high levels of CO2 caused a greater increase of VviDREBA1-1 in the skin, VviDREBA1-6 in the pulp and VviDREBA1-7 in the skin and pulp. Likewise, the application of high levels of CO2 regulated the retention of introns in the transcripts of the dehydrins studied in the different tissues analyzed. The DHNs promoter analysis showed that VviDHN2 presented the cis-acting DRE and CRT elements, whereas VviDHN1a presented only the DRE motif. Our electrophoretic mobility shift assays (EMSA) showed that VviDREBA1-1 was the only transcription factor that had in vitro binding capacity to the CRT element of the VviDHN2 promoter region, indicating that the transcriptional regulation of VviDHN1a and VviDHN4 would be carried out by activating other independent routes of these transcription factors. Our results suggest that the application of high CO2 levels to maintain table grape quality during storage at 0∘C, leads to an activation of CBF/DREBs transcription factors. Among these factors, VviDREBA1-1 seems to participate in the transcriptional activation of VviDHN2 via CRT binding, with the unspliced form of this DHN being activated by high CO2 levels in all the tissues analyzed.
机译:C-重复/脱水响应元件结合因子(CBF / DREB)是转录因子,在改善植物抗冷胁迫性中起作用,并在一组冷调节基因的启动子中识别DRE / CRT元素。脱水蛋白(DHNs)是响应冷胁迫而在植物中积累的蛋白质,在某些情况下,其启动子中存在CBF / DREB识别序列,并被该转录因子家族的成员激活。在0°C下用20 kPa CO2进行为期3天的气化处理,用于食用葡萄cv。秋季皇室在收获后的存储期间将束的质量保持在0°C,从而减少了体重减轻并减少了花生的褐变。为了确定CBF / DREB基因在通过调节DHN的气体治疗的有益作用中的作用,我们分析了三种VviDREBA1(VviDREBA1-1,VviDREBA1-6和VviDREBA1-7)的基因表达模式,以及两个可变剪接形式的三个VviDHN(VviDHN1a,VviDHN2和VviDHN4)。结果表明,VviDREBA1s表达的差异取决于组织和大气成分,尽管施加高水平的二氧化碳会导致皮肤中VviDREBA1-1,果肉中的VviDREBA1-6和皮肤及果肉中的VviDREBA1-7更大的增加。 。同样,在不同分析组织中,高水平的二氧化碳的施加也调节了内含子在脱水蛋白转录本中的保留。 DHNs启动子分析表明,VviDHN2呈现顺式作用的DRE和CRT元件,而VviDHN1a仅呈现DRE主题。我们的电泳迁移率变动分析(EMSA)显示,VviDREBA1-1是唯一具有体外结合能力的VviDHN2启动子区域CRT元件的转录因子,这表明VviDHN1a和VviDHN4的转录调控将通过激活其他这些转录因子的独立途径。我们的结果表明,在0°C下储存期间应用高水平的CO2来维持鲜食葡萄的品质会导致CBF / DREBs转录因子的激活。在这些因素中,VviDREBA1-1似乎通过CRT结合参与了VviDHN2的转录激活,而该DHN的未剪接形式在所有分析的组织中都被高CO2浓度激活。

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