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首页> 外文期刊>Frontiers in Plant Science >The Transcriptional Responses and Metabolic Consequences of Acclimation to Elevated Light Exposure in Grapevine Berries
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The Transcriptional Responses and Metabolic Consequences of Acclimation to Elevated Light Exposure in Grapevine Berries

机译:对葡萄浆内升高的曝光升高的曝光升高的转录反应及代谢后果

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An increasing number of field studies that focus on grapevine berry development and ripening implement systems biology approaches; the results are highlighting not only the intricacies of the developmental programming/reprogramming that occurs, but also the complexity of how profoundly the microclimate influences the metabolism of the berry throughout the different stages of development. In a previous study we confirmed that a leaf removal treatment to Sauvignon Blanc grapes, grown in a highly characterized vineyard, primarily affected the level of light exposure to the berries throughout their development. A full transcriptomic analysis of berries from this model vineyard details the underlying molecular responses of the berries in reaction to the exposure and show how the berries acclimated to the imposing light stress. Gene expression involved in the protection of the photosynthetic machinery through rapid protein-turnover and the expression of photoprotective flavonoid compounds were most significantly affected in green berries. Overall, the transcriptome analysis showed that the berries implemented multiple stress-mitigation strategies in parallel and metabolite analysis was used to support the main findings. Combining the transcriptome data and amino acid profiling provided evidence that amino acid catabolism probably contributed to the mitigation of a likely energetic deficit created by the upregulation of (energetically) costly stress defense mechanisms. Furthermore, the rapid turnover of essential proteins involved in the maintenance of primary metabolism and growth in the photosynthetically active grapes appeared to provide precursors for the production of protective secondary metabolites such as apocarotenoids and flavonols in the ripening stages of the berries. Taken together, these results confirmed that the green grape berries responded to light stress much like other vegetative organs and were able to acclimate to the increased exposure, managing their metabolism and energy requirements to sustain the developmental cycle toward ripening. The typical metabolic consequences of leaf removal on grape berries can therefore now be linked to increased light exposure through mechanisms of photoprotection in green berries that leads toward acclimation responses that remain intact until ripening.
机译:越来越多的现场研究,重点关注葡萄浆果开发和成熟工具生物学方法;结果不仅突出了发生的发育规划/重编程的复杂性,而且还突出了发生的复杂性,而且微气候多么深入影响浆果的新陈代谢在整个不同的发展阶段。在以前的一项研究中,我们证实,在高度特征的葡萄园中生长的Sauvignon Blanc葡萄的叶片去除治疗主要影响了在整个发展中对浆果的光线暴露水平。来自该模型葡萄园的浆果完全转录组分析细节浆果对暴露反应的潜在分子反应,并展示了浆果如何适应轰隆的光应力。通过快速蛋白质转换和光保护类黄酮化合物的表达参与保护光合作机的基因表达在绿色浆果中最显着影响。总的来说,转录组分析表明,浆果在并行实施了多种应力缓解策略,使用代谢物分析来支持主要结果。结合转录组数据和氨基酸分析提供了证据表明氨基酸分解代谢可能有助于减轻由(Enowleary)的昂贵的压力防御机制的上调所产生的可能性赤字。此外,涉及维持初级代谢和生长的基本蛋白质的快速营业额似乎提供了用于在浆果的成熟阶段中生产的保护性次生代谢产物的前体,例如己本脱核和黄酮。总之,这些结果证实,绿色葡萄浆果反应着轻微的压力,与其他营养器官相同,并且能够适应增加的暴露,管理他们的新陈代谢和能源要求,以维持发展循环朝成成熟的发展周期。因此,现在可以将叶片去除叶片移除的典型代谢后果与绿色浆果中的光保护机制增加,导致仍然完整的适应响应,从而引入依然完整的依然完整的曲线。

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