首页> 外文期刊>International Journal of Molecular Sciences >Integrative Analyses of Widely Targeted Metabolic Profiling and Transcriptome Data Reveals Molecular Insight into Metabolomic Variations during Apple ( Malus domestica ) Fruit Development and Ripening
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Integrative Analyses of Widely Targeted Metabolic Profiling and Transcriptome Data Reveals Molecular Insight into Metabolomic Variations during Apple ( Malus domestica ) Fruit Development and Ripening

机译:广泛靶向的代谢分析和转录组数据的综合分析显示苹果(Malus Domestica)果实开发和成熟过程中的代谢物变异的分子洞察力

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The apple is a favorite fruit for human diet and is one of the most important commercial fruit crops around the world. Investigating metabolic variations during fruit development can provide a better understanding on the formation of fruit quality. The present study applied a widely targeted LC-MS-based metabolomics approach with large-scale detection, identification and quantification to investigate the widespread metabolic changes during “Pinova” apple development and ripening. A total of 462 primary and secondary metabolites were simultaneously detected, and their changes along with the four fruit-development stages were further investigated. The results indicated that most of the sugars presented increasing accumulation levels while organic acid, including Tricarboxylic acid cycle (TCA) intermediates, showed a distinct decreasing trend across the four fruit-development stages. A total of 207 secondary metabolites consisted of 104 flavonoids and 103 other secondary metabolites. Many flavonoids maintained relatively high levels in the early fruit stage and then rapidly decreased their levels at the following developmental stages. Further correlation analyses of each metabolite–metabolite pair highlighted the cross talk between the primary and secondary metabolisms across fruit development and ripening, indicating the significant negative correlations between sugars and secondary metabolites. Moreover, transcriptome analysis provided the molecular basis for metabolic variations during fruit development. The results showed that most differentially expressed genes (DEGs) involved in the TCA cycle were upregulated from the early fruit stage to the preripening stage. The extensive downregulation of controlling genes involved in the flavonoid pathway is probably responsible for the rapid decrease of flavonoid content at the early fruit stage. These data provide a global view of the apple metabolome and a comprehensive analysis on metabolomic variations during fruit development, providing a broader and better understanding on the molecular and metabolic basis of important fruit quality traits in commercial apples.
机译:苹果是人类饮食最喜欢的水果,是世界上最重要的商业水果作物之一。研究水果开发期间的代谢变化可以更好地了解果实质量的形成。本研究应用了广泛的LC-MS基于代谢组合方法,具有大规模的检测,识别和量化,以研究“Pinova”苹果开发和成熟期间的广泛代谢变化。同时检测总共462个初级和次生代谢物,进一步研究了它们随着四种果实显影阶段的变化。结果表明,大多数糖呈现出增加的积累水平,而有机酸,包括三羧酸循环(TCA)中间体,表明四个果实显影阶段的明显降低趋势。共有207种次生代谢物由104种黄酮类化合物和103种其他次级代谢物组成。许多黄酮类化合物在早期果汁中保持相对较高的水平,然后在以下发展阶段迅速降低其水平。每种代谢物 - 代谢物对的进一步相关分析突出了果实发育和熟化中初级和次生代谢之间的横谈,表明糖和次级代谢物之间的显着负相关。此外,转录组分析为果实发育过程中的代谢变化提供了分子基础。结果表明,参与TCA循环中涉及的大多数差异表达的基因(DEGS)从早期的果汁阶段上调到预处理阶段。在黄酮型途径中涉及的控制基因的广泛下调可能负责早期水果阶段的黄酮含量的快速降低。这些数据提供了苹果代谢组的全球视图,以及在果实开发期间的代谢多种变异综合分析,对商业苹果中重要果实质量特征的分子和代谢基础提供更广泛和更好的理解。

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