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GC–MS metabolic profiling of Cabernet Sauvignon and Merlot cultivars during grapevine berry development and network analysis reveals a stage- and cultivar-dependent connectivity of primary metabolites

机译:葡萄果实发育和网络分析过程中赤霞珠和梅鹿lot品种的GC-MS代谢谱分析揭示了初级代谢物的阶段和品种相关性

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摘要

Information about the total chemical composition of primary metabolites during grape berry development is scarce, as are comparative studies trying to understand to what extent metabolite modifications differ between cultivars during ripening. Thus, correlating the metabolic profiles with the changes occurring in berry development and ripening processes is essential to progress in their comprehension as well in the development of new approaches to improve fruit attributes. Here, the developmental metabolic profiling analysis across six stages from flowering to fully mature berries of two cultivars, Cabernet Sauvignon and Merlot, is reported at metabolite level. Based on a gas chromatography–mass spectrometry untargeted approach, 115 metabolites were identified and relative quantified in both cultivars. Sugars and amino acids levels show an opposite behaviour in both cultivars undergoing a highly coordinated shift of metabolite associated to primary metabolism during the stages involved in growth, development and ripening of berries. The changes are characteristic for each stage, the most pronounced ones occuring at fruit setting and pre-Veraison. They are associated to a reduction of the levels of metabolites present in the earlier corresponding stage, revealing a required catabolic activity of primary metabolites for grape berry developmental process. Network analysis revealed that the network connectivity of primary metabolites is stage- and cultivar-dependent, suggesting differences in metabolism regulation between both cultivars as the maturity process progresses. Furthermore, network analysis may represent an appropriate method to display the association between primary metabolites during berry developmental processes among different grapevine cultivars and for identifying potential biologically relevant metabolites.Electronic supplementary materialThe online version of this article (doi:10.1007/s11306-015-0927-z) contains supplementary material, which is available to authorized users.
机译:关于葡萄浆果发育过程中主要代谢物总化学成分的信息很少,比较研究试图了解成熟期间不同品种间代谢物修饰的差异程度也比较少。因此,将代谢特征与浆果发育和成熟过程中发生的变化相关联对于理解它们以及开发新的改善果实特性的方法至关重要。在这里,从代谢物水平上报道了从两个品种(赤霞珠和梅乐)的开花到完全成熟的六个阶段的发育代谢概况分析。基于气相色谱-质谱无目标方法,在两个品种中鉴定出115种代谢物并对其进行了相对定量。糖和氨基酸水平在两个品种中都表现出相反的行为,这两个品种在浆果的生长,发育和成熟阶段都经历与初级代谢相关的代谢产物高度协调的转变。每个阶段的变化都是特征性的,最明显的变化发生在坐果和定型前。它们与较早对应阶段中代谢物水平的降低有关,揭示了葡萄浆果发育过程中主要代谢物所需的分解代谢活性。网络分析表明,主要代谢物的网络连通性取决于阶段和品种,这表明随着成熟过程的进行,两个品种之间的代谢调控也不同。此外,网络分析可能是一种合适的方法,可以显示不同葡萄品种在浆果发育过程中主要代谢产物之间的关联并鉴定潜在的生物学相关代谢产物。电子补充材料本文的在线版本(doi:10.1007 / s11306-015-0927) -z)包含补充材料,授权用户可以使用。

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