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代谢组学和转录组联合分析揭示了不同蔗糖水平对葡萄愈伤组织培养中类黄酮和芪类物质生产的调节作用。

Metabolome and Transcriptome Joint Analysis Reveals That Different Sucrose Levels Regulate the Production of Flavonoids and Stilbenes in Grape Callus Culture.

机构信息

College of Horticulture, China Agricultural University, Beijing 100083, China.

出版信息

Int J Mol Sci. 2024 Sep 27;25(19):10398. doi: 10.3390/ijms251910398.

Abstract

To reveal the effect of sucrose concentration on the production of secondary metabolites, a metabolome and transcriptome joint analysis was carried out using callus induced from grape variety Mio Red cambial meristematic cells. We identified 559 metabolites-mainly flavonoids, phenolic acids, and stilbenoids-as differential content metabolites (fold change ≥2 or ≤0.5) in at least one pairwise comparison of treatments with 7.5, 15, or 30 g/L sucrose in the growing media for 15 or 30 days (d). Resveratrol, viniferin, and amurensin contents were highest at 15 d of subculture; piceid, ampelopsin, and pterostilbene had higher contents at 30 d. A transcriptome analysis identified 1310 and 498 (at 15 d) and 1696 and 2211 (at 30 d) differentially expressed genes (DEGs; log2(fold change) ≥ 1, < 0.05) in 7.5 vs. 15 g/L and 15 vs. 30 g/L sucrose treatments, respectively. In phenylpropane and isoflavone pathways, DEGs encoding cinnamic acid 4-hydroxylase, chalcone synthase, chalcone isomerase, and flavanone 3-hydroxylase were more highly expressed at 15 d than at 30 d, while other DEGs showed different regulation patterns corresponding to sucrose concentrations and cultivation times. For all three sucrose concentrations, the stilbene synthase () gene exhibited significantly higher expression at 15 vs. 30 d, while two resveratrol O-methyltransferase () genes related to pterostilbene synthesis showed significantly higher expression at 30 vs. 15 d. In addition, a total of 481 DEGs were annotated as transcription factors in pairwise comparisons; an integrative analysis suggested MYB59, WRKY20, and MADS8 as potential regulators responding to sucrose levels in flavonoid and stilbene biosynthesis in grape callus. Our results provide valuable information for high-efficiency production of flavonoids and stilbenes using grape callus.

摘要

为了揭示蔗糖浓度对次生代谢产物产生的影响,我们对来源于葡萄品种 Mio Red 形成层分生细胞的愈伤组织进行了代谢组学和转录组学联合分析。我们鉴定了 559 种代谢物——主要是类黄酮、酚酸和芪类——在至少一种处理的两两比较中,作为差异含量代谢物(变化倍数≥2 或≤0.5),这些处理是在含有 7.5、15 或 30 g/L 蔗糖的培养基中培养 15 或 30 天(d)。在继代培养的第 15 天,白藜芦醇、二氢杨梅素和紫檀芪的含量最高;在第 30 天,白皮杉醇、ampelopsin 和 pterostilbene 的含量较高。转录组分析在 7.5 vs. 15 g/L 和 15 vs. 30 g/L 蔗糖处理中分别鉴定出 1310 个和 498 个(第 15 天)和 1696 个和 2211 个(第 30 天)差异表达基因(DEG;log2(倍数变化)≥1,<0.05)。在苯丙烷和异黄酮途径中,编码肉桂酸 4-羟化酶、查尔酮合酶、查尔酮异构酶和黄烷酮 3-羟化酶的 DEG 在第 15 天的表达高于第 30 天,而其他 DEG 则表现出与蔗糖浓度和培养时间相应的不同调控模式。对于所有三种蔗糖浓度,芪合酶()基因在第 15 天的表达明显高于第 30 天,而与 pterostilbene 合成相关的两个白藜芦醇 O-甲基转移酶()基因在第 30 天的表达明显高于第 15 天。此外,在成对比较中,共有 481 个 DEG 被注释为转录因子;综合分析表明,MYB59、WRKY20 和 MADS8 可能是响应葡萄愈伤组织中黄酮类和芪类生物合成中蔗糖水平的潜在调控因子。我们的研究结果为利用葡萄愈伤组织高效生产黄酮类和芪类化合物提供了有价值的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c44a/11476901/cc852433f2fe/ijms-25-10398-g001.jpg

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