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整合代谢组学和转录组学揭示黄酮类化合物在菊花抗寒性中的关键作用。

Integrated Metabolomics and Transcriptomics Reveal the Key Role of Flavonoids in the Cold Tolerance of Chrysanthemum.

机构信息

Key Laboratory of Saline-Alkali Vegetation Ecology Restoration, Ministry of Education, Northeast Forestry University, Harbin 150040, China.

College of Life Science, Northeast Forestry University, Harbin 150040, China.

出版信息

Int J Mol Sci. 2024 Jul 10;25(14):7589. doi: 10.3390/ijms25147589.

Abstract

Chrysanthemum (, ground-cover Chrysanthemums), one of the important garden flowers, has a high ornamental and economic value. However, its ornamental value is significantly diminished by the low temperature experienced in northeastern China. Here, metabolomics and transcriptomics were performed on three Chrysanthemum cultivars before and after a low temperature to investigate the dynamic metabolite changes and the molecular regulatory mechanisms. The results showed that 1324 annotated metabolites were detected, among which 327 were identified as flavonoids derived from Chrysanthemum. The accumulation of metabolites and gene expression related to the flavonoid biosynthesis pathway significantly increased in the three cultivars under the low temperature, indicating flavonoid metabolism actively participates in the Chrysanthemum cold response. Specifically, the content of cyanidin and pelargonidin derivatives and the expression of anthocyanin biosynthesis genes significantly increases in XHBF, providing a reasonable explanation for the change in petal color from white to purple under the low temperature. Six candidate UDP-glycosyltransferase genes involved in the glycosylation of flavonoids were identified through correlation networks and phylogenetic analysis. CmNAC1, CmbZIP3, and other transcription factors potentially regulating flavonoid metabolism and responding to low temperatures were discovered by correlation analysis and weighted gene co-expression network analysis (WGCNA). In conclusion, this study elucidated the specific response of flavonoids to low temperatures in Chrysanthemums, providing valuable insights and metabolic data for investigating cold tolerance.

摘要

菊花(地被菊)是重要的园林花卉之一,具有很高的观赏和经济价值。然而,在中国东北地区的低温环境下,其观赏价值显著降低。本研究采用代谢组学和转录组学方法,对 3 个菊花品种进行了低温前后的分析,以探讨其动态代谢变化和分子调控机制。结果表明,共检测到 1324 种注释代谢物,其中 327 种被鉴定为菊花来源的类黄酮。在低温下,3 个品种的代谢物积累和与类黄酮生物合成途径相关的基因表达显著增加,表明类黄酮代谢积极参与菊花的低温响应。具体来说,低温下 XHBF 中飞燕草素和天竺葵素衍生物的含量和花色苷生物合成基因的表达显著增加,为低温下花瓣颜色从白色变为紫色提供了合理的解释。通过关联网络和系统发育分析,鉴定了 6 个参与类黄酮糖基化的候选 UDP-糖基转移酶基因。通过关联分析和加权基因共表达网络分析(WGCNA),发现了 CmNAC1、CmbZIP3 等可能调节类黄酮代谢和响应低温的转录因子。综上所述,本研究阐明了菊花中类黄酮对低温的特定响应,为研究其耐寒性提供了有价值的见解和代谢数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a349/11276724/9aa54bd53f6d/ijms-25-07589-g001.jpg

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