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转录组和代谢组分析揭示了光照强度调节獐牙菜中环烯醚萜生物合成的机制。

Transcriptome and metabolome analysis reveals mechanism of light intensity modulating iridoid biosynthesis in Gentiana macrophylla Pall.

机构信息

State Key Laboratory of Research & Development of Characteristic Qin Medicine Resources (Cultivation), Shaanxi Innovative Drug Research Center, Co-construction Collaborative Innovation Center for Chinese Medicinal Resources Industrialization by Shaanxi & Education Ministry, School of Pharmacy, Shaanxi University of Chinese Medicine, Xianyang, 712046, P.R. China.

College of Life Science, Qinghai Normal University, Xining, 810016, P.R. China.

出版信息

BMC Plant Biol. 2024 Jun 11;24(1):526. doi: 10.1186/s12870-024-05217-y.

Abstract

Light intensity is a key factor affecting the synthesis of secondary metabolites in plants. However, the response mechanisms of metabolites and genes in Gentiana macrophylla under different light intensities have not been determined. In the present study, G. macrophylla seedlings were treated with LED light intensities of 15 µmol/m/s (low light, LL), 90 µmol/m/s (medium light, ML), and 200 µmol/m/s (high light, HL), and leaves were collected on the 5th day for further investigation. A total of 2162 metabolites were detected, in which, the most abundant metabolites were identified as flavonoids, carbohydrates, terpenoids and amino acids. A total of 3313 and 613 differentially expressed genes (DEGs) were identified in the LL and HL groups compared with the ML group, respectively, mainly enriched in KEGG pathways such as carotenoid biosynthesis, carbon metabolism, glycolysis/gluconeogenesis, amino acids biosynthesis, plant MAPK pathway and plant hormone signaling. Besides, the transcription factors of GmMYB5 and GmbHLH20 were determined to be significantly correlated with loganic acid biosynthesis; the expression of photosystem-related enzyme genes was altered under different light intensities, regulating the expression of enzyme genes involved in the carotenoid, chlorophyll, glycolysis and amino acids pathway, then affecting their metabolic biosynthesis. As a result, low light inhibited photosynthesis, delayed glycolysis, thus, increased certain amino acids and decreased loganic acid production, while high light got an opposite trend. Our research contributed significantly to understand the molecular mechanism of light intensity in controlling metabolic accumulation in G. macrophylla.

摘要

光强是影响植物次生代谢物合成的关键因素。然而,不同光强下獐牙菜属植物代谢物和基因的响应机制尚不清楚。本研究以獐牙菜属植物幼苗为试材,采用 15 µmol/m/s(低光,LL)、90 µmol/m/s(中光,ML)和 200 µmol/m/s(高光,HL)LED 光强处理,第 5 天收集叶片进行进一步研究。共检测到 2162 种代谢物,其中含量最丰富的代谢物鉴定为类黄酮、碳水化合物、萜类和氨基酸。与 ML 组相比,LL 和 HL 组分别鉴定出 3313 个和 613 个差异表达基因(DEGs),主要富集在类胡萝卜素生物合成、碳代谢、糖酵解/糖异生、氨基酸生物合成、植物 MAPK 途径和植物激素信号等 KEGG 途径。此外,确定 GmMYB5 和 GmbHLH20 的转录因子与龙胆酸生物合成显著相关;不同光强下与光合作用相关的酶基因表达发生改变,调节类胡萝卜素、叶绿素、糖酵解和氨基酸途径中酶基因的表达,进而影响其代谢生物合成。结果表明,弱光抑制光合作用,延迟糖酵解,从而增加某些氨基酸并减少龙胆酸的产生,而高光则呈现相反的趋势。本研究为阐明光强控制獐牙菜属植物代谢物积累的分子机制提供了重要依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c6e/11165902/c830116d1422/12870_2024_5217_Fig1_HTML.jpg

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