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代谢组学与转录组学的综合分析揭示了山楂果实发育过程中代谢组变化的分子机制。

Integrative Analysis of Metabolome and Transcriptome Reveals Molecular Insight into Metabolomic Variations during Hawthorn Fruit Development.

作者信息

Wang Yan, Hao Ruixin, Guo Rongkun, Nong Huilan, Qin Yu, Dong Ningguang

机构信息

Institute of Forestry and Pomology, Beijing Academy of Agriculture and Forestry Sciences, Beijing Engineering Research Center for Deciduous Fruit Trees, Beijing 100093, China.

出版信息

Metabolites. 2023 Mar 13;13(3):423. doi: 10.3390/metabo13030423.

Abstract

Hawthorn ( var. ), a cultivated fruit tree, is native and unique to China. Its fruits have high nutritional, health, and medicinal values. However, the development and ripening process of hawthorns is accompanied by dramatic changes in flavor, aroma, and bioactive phytochemicals, which are the fundamental factors that contribute to the potential health benefits and establishment of fruit quality. Therefore, an exploration of the dynamic changes in metabolites and their regulatory networks during the development of hawthorn fruits can elucidate the formation mechanisms of active substances in hawthorn fruits. In this study, we used a broad targeted metabolomics approach to identify and analyze the dynamics of metabolites in hawthorn fruits at five developmental stages. The results revealed 998 primary and secondary metabolites that were classified into 15 categories. The accumulation levels of most sugars increased during fruit development and then accelerated at the fruit ripening stage. The accumulation levels of a few organic acids (e.g., citric acid, isocitric acid, and quinic acid) continuously increased. Many organic acids exhibited significant decreasing trends. Among the 561 secondary metabolites detected, 189 were phenolic acids and 199 were flavonoids. The levels of many flavonoids were significantly reduced at later stages of fruit development; in contrast, the levels of two anthocyanins significantly increased during fruit ripening. Correlation analysis revealed that there is a certain correlation within and between primary as well as secondary metabolites during fruit development. Furthermore, the integration of metabolomic and transcriptomic data in this study revealed that changes in the expression of some differentially expressed genes (DEGs) were associated with the accumulation of metabolites such as sugars, organic acids, and flavonoids, e.g., the upregulated expression levels of (citrate synthase) genes were consistent with the continued accumulation of citric acid. Overall, this study demonstrates the metabolic changes that occur during the development of hawthorn fruit, explores the molecular mechanisms that underlie metabolite changes during fruit development, and lays a strong theoretical foundation for the improvement of hawthorn fruit quality and the development of functional components.

摘要

山楂(变种)是一种栽培果树,原产于中国且独具特色。其果实具有很高的营养、健康和药用价值。然而,山楂的发育和成熟过程伴随着风味、香气和生物活性植物化学物质的显著变化,这些是赋予果实潜在健康益处和确立果实品质的基本因素。因此,探索山楂果实发育过程中代谢物的动态变化及其调控网络,能够阐明山楂果实中活性物质的形成机制。在本研究中,我们采用广泛靶向代谢组学方法,对山楂果实五个发育阶段的代谢物动态进行鉴定和分析。结果揭示了998种初级和次级代谢物,它们被分为15类。大多数糖类的积累水平在果实发育过程中增加,然后在果实成熟阶段加速。少数有机酸(如柠檬酸、异柠檬酸和奎尼酸)的积累水平持续增加。许多有机酸呈现出显著下降趋势。在检测到的561种次级代谢物中,189种是酚酸,199种是黄酮类化合物。许多黄酮类化合物的水平在果实发育后期显著降低;相反,两种花青素的水平在果实成熟过程中显著增加。相关性分析表明,果实发育过程中初级和次级代谢物内部以及它们之间存在一定的相关性。此外,本研究中代谢组学和转录组学数据的整合表明,一些差异表达基因(DEGs)表达的变化与糖类、有机酸和黄酮类等代谢物的积累相关,例如(柠檬酸合酶)基因表达水平的上调与柠檬酸的持续积累一致。总体而言,本研究展示了山楂果实发育过程中发生的代谢变化,探索了果实发育过程中代谢物变化的分子机制,并为改善山楂果实品质和开发功能成分奠定了坚实的理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fd8/10054872/4ade9010a09a/metabolites-13-00423-g001.jpg

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