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整合代谢组学和转录组学分析揭示了黄瓜黄皮形成过程中涉及的新途径。

Integrated Metabolome and Transcriptome Analysis Unveils Novel Pathway Involved in the Formation of Yellow Peel in Cucumber.

机构信息

College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha 410128, China.

Hunan Vegetable Research Institute, Hunan Academy of Agricultural Sciences, Changsha 410125, China.

出版信息

Int J Mol Sci. 2021 Feb 2;22(3):1494. doi: 10.3390/ijms22031494.

Abstract

Yellow peel will adversely affect the appearance quality of cucumber fruit, but the metabolites and the molecular mechanism of pigment accumulation in cucumber peel remain unclear. Flavonoid metabolome and transcriptome analyses were carried out on the young peel and old peel of the color mutant L19 and the near-isogenic line L14. The results showed that there were 165 differential flavonoid metabolites in the old peel between L14 and L19. The total content of representative flavonoid metabolites in the old peel of L14 was 95 times that of L19, and 35 times that of young peel of L14, respectively. This might explain the difference of pigment accumulation in yellow peel. Furthermore, transcriptome analysis showed that there were 3396 and 1115 differentially expressed genes in the yellow color difference group (Young L14 vs. Old L14 and Old L14 vs. Old L19), respectively. These differentially expressed genes were significantly enriched in the MAPK signaling pathway-plant, plant-pathogen interaction, flavonoid biosynthesis and cutin, suberine and wax biosynthesis pathways. By analyzing the correlation between differential metabolites and differentially expressed genes, six candidate genes related to the synthesis of glycitein, kaempferol and homoeriodictyol are potentially important. In addition, four key transcription factors that belong to R2R3-MYB, bHLH51 and WRKY23 might be the major drivers of transcriptional changes in the peel between L14 and L19. Then, the expression patterns of these important genes were confirmed by qRT-PCR. These results suggested that the biosynthesis pathway of homoeriodictyol was a novel way to affect the yellowing of cucumber peel. Together, the results of this study provide a research basis for the biosynthesis and regulation of flavonoids in cucumber peel and form a significant step towards identifying the molecular mechanism of cucumber peel yellowing.

摘要

青皮会严重影响黄瓜果实的外观品质,但黄瓜果皮中色素积累的代谢物和分子机制尚不清楚。对颜色突变体 L19 和近等基因系 L14 的幼果皮和老果皮进行了类黄酮代谢组和转录组分析。结果表明,L14 和 L19 老果皮之间有 165 种差异类黄酮代谢物。L14 老果皮中代表性类黄酮代谢物的总含量分别是 L19 的 95 倍和 L14 幼果皮的 35 倍,这可能解释了黄皮色素积累的差异。此外,转录组分析表明,在黄色差异组(幼 L14 与老 L14 和老 L14 与老 L19)中分别有 3396 个和 1115 个差异表达基因。这些差异表达基因在 MAPK 信号通路-植物、植物-病原体互作、类黄酮生物合成和角质、栓皮和蜡生物合成途径中显著富集。通过分析差异代谢物与差异表达基因的相关性,鉴定出 6 个与染料木苷、山奈酚和芹菜素合成相关的候选基因可能是重要的。此外,属于 R2R3-MYB、bHLH51 和 WRKY23 的 4 个关键转录因子可能是 L14 和 L19 果皮之间转录变化的主要驱动因素。然后,通过 qRT-PCR 验证了这些重要基因的表达模式。这些结果表明,芹菜素的生物合成途径是影响黄瓜果皮变黄的新途径。总之,本研究结果为黄瓜果皮类黄酮的生物合成和调控提供了研究基础,为鉴定黄瓜果皮变黄的分子机制迈出了重要一步。

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