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首页> 外文期刊>BMC Plant Biology >iTRAQ-based protein profiling provides insights into the central metabolism changes driving grape berry development and ripening
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iTRAQ-based protein profiling provides insights into the central metabolism changes driving grape berry development and ripening

机译:基于iTRAQ的蛋白质谱分析可深入了解推动葡萄浆果发育和成熟的主要代谢变化

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Background Grapevine (Vitis vinifera L.) is an economically important fruit crop. Quality-determining grape components such as sugars, acids, flavors, anthocyanins, tannins, etc., accumulate in the different grape berry development stages. Thus, correlating the proteomic profiles with the biochemical and physiological changes occurring in grape is of paramount importance to advance in our understanding of berry development and ripening processes. Results We report the developmental analysis of Vitis vinifera cv. Muscat Hamburg berries at the protein level from fruit set to full ripening. An iTRAQ-based bottom-up proteomic approach followed by tandem mass spectrometry led to the identification and quantitation of 411 and 630 proteins in the green and ripening phases, respectively. Two key points in development relating to changes in protein level were detected: end of the first growth period (7?mm-to-15?mm) and onset of ripening (15?mm-to-V100, V100-to-110). A functional analysis was performed using the Blast2GO software based on the enrichment of GO terms during berry growth. Conclusions The study of the proteome contributes to decipher the biological processes and metabolic pathways involved in the development and quality traits of fruit and its derived products. These findings lie mainly in metabolism and storage of sugars and malate, energy-related pathways such as respiration, photosynthesis and fermentation, and the synthesis of polyphenolics as major secondary metabolites in grape berry. In addition, some key steps in carbohydrate and malate metabolism have been identified in this study, i.e., PFP-PFK or SuSy-INV switches among others, which may influence the final sugar and acid balance in ripe fruit. In conclusion, some proteins not reported to date have been detected to be deregulated in specific tissues and developmental stages, leading to formulate new hypotheses on the metabolic processes underlying grape berry development. These results open up new lines to decipher the processes controlling grape berry development and ripening.
机译:背景技术葡萄(Vitis vinifera L.)是一种经济上重要的水果作物。决定质量的葡萄成分,例如糖,酸,调味剂,花青素,单宁酸等,在葡萄浆果的不同发育阶段积累。因此,将蛋白质组学特征与葡萄中发生的生化和生理变化相关联对于提高我们对浆果发育和成熟过程的理解至关重要。结果我们报告了葡萄Vv的发育分析。马斯喀特汉堡浆果的蛋白质水平从水果凝固到完全成熟。基于iTRAQ的自下而上的蛋白质组学方法以及串联质谱法分别导致了绿色和成熟阶段中411和630蛋白的鉴定和定量。发现了与蛋白质水平变化有关的两个发展关键点:第一个生长期的结束(7?mm至15?mm)和成熟开始(15?mm至V100,V100至110)。 。使用Blast2GO软件根据浆果生长过程中GO的富集进行功能分析。结论对蛋白质组的研究有助于破译与水果及其衍生产品的发育和品质性状有关的生物学过程和代谢途径。这些发现主要在于糖和苹果酸的代谢和储存,与能量有关的途径(如呼吸,光合作用和发酵)以及多酚类化合物(作为葡萄浆果中主要的次要代谢产物)的合成。此外,这项研究还确定了碳水化合物和苹果酸代谢中的一些关键步骤,即PFP-PFK或SuSy-INV转换等,这可能会影响成熟果实的最终糖和酸平衡。总之,已发现某些迄今未报道的蛋白质在特定的组织和发育阶段被失调,从而导致了关于葡萄浆果发育的代谢过程的新假设。这些结果开辟了新的思路,以破译控制葡萄浆果发育和成熟的过程。

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