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整合代谢组学和转录组学分析揭示了甜樱桃(Prunus avium L.)果实发育和成熟过程中代谢组学变化及参与果实品质的候选基因。

Integrative analyses of metabolome and transcriptome reveals metabolomic variations and candidate genes involved in sweet cherry (Prunus avium L.) fruit quality during development and ripening.

机构信息

School of Food Engineering, Ludong University, Yantai, Shandong, 264025, PR China.

Cherry Research Department, Yantai Agricultural Science and Technology Institute, No.26, West Gangcheng Street, Yantai, 265500, China.

出版信息

PLoS One. 2021 Nov 15;16(11):e0260004. doi: 10.1371/journal.pone.0260004. eCollection 2021.

Abstract

Sweet cherry (Prunus avium L.), one of the most appreciated and most important commercial temperate fruits, has high sensory quality and nutritional value. Investigating its metabolic variations provides valuable information on the formation of fruit quality. In this study, widely targeted LC-MS/MS based metabolomics was used to identify and quantify metabolic changes during 'Black Pearl' sweet cherry development and ripening. A total of 263 significant differentially expressed metabolites (DEMs) were detected during the four fruit-development stages. Significant differences were observed in the composition and content of compounds in the four stages of cherry development, especially sugars, organic acids, and flavonoids. Moreover, transcriptome analysis provided a molecular basis for metabolic variations during fruit development. A total of 6724 significant differentially expressed genes (DEGs) were identified. Further correlation analysis of major DEMs and DEGs showed that 19 key DEGs were involved in sugar metabolism, 23 key DEGs in organic acid metabolism, and 13 key DEGs in flavonoid metabolism. The upregulated genes involved in the flavonoid pathway probably play an important role in regulating the rapid increase of anthocyanin content during fruit development. These comprehensive analysis data provide a better understanding to improve fruit quality traits based on molecular and metabolic levels.

摘要

甜樱桃(Prunus avium L.)是最受赞赏和最重要的商业温带水果之一,具有很高的感官品质和营养价值。研究其代谢变化为果实品质的形成提供了有价值的信息。在这项研究中,使用广泛靶向的 LC-MS/MS 代谢组学方法来鉴定和量化'黑珍珠'甜樱桃发育和成熟过程中的代谢变化。在四个果实发育阶段共检测到 263 种显著差异表达代谢物(DEMs)。在樱桃发育的四个阶段,化合物的组成和含量存在显著差异,特别是糖、有机酸和类黄酮。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。共鉴定出 6724 个显著差异表达基因(DEGs)。对主要 DEMs 和 DEGs 的进一步相关分析表明,19 个关键 DEGs 参与糖代谢,23 个关键 DEGs 参与有机酸代谢,13 个关键 DEGs 参与类黄酮代谢。类黄酮途径中上调的基因可能在调节果实发育过程中花色苷含量的快速增加方面发挥重要作用。这些综合分析数据为基于分子和代谢水平改善果实品质特性提供了更好的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19ba/8592472/ba5b228480d3/pone.0260004.g001.jpg

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