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基于转录组测序的白芷早期抽薹和不抽薹根差异分析。

Analysis of the difference between early-bolting and non-bolting roots of Angelica dahurica based on transcriptome sequencing.

机构信息

Sichuan Academy of Traditional Chinese Medicine Sciences, Sichuan Genuine Medicinal Materials System Development Engineering Technology Research Center, Sichuan Key Laboratory of Quality and Innovation of Traditional Chinese Medicine, Chengdu, 610041, China.

出版信息

Sci Rep. 2023 May 15;13(1):7847. doi: 10.1038/s41598-023-34554-5.

Abstract

Angelica dahurica (Fisch. ex Hoffm.) Benth.et Hook.f.var.formosana (Boiss.) Shan et Yuan (A. dahurica) is a well-known medicinal plant that has a wide range of applications in the pharmaceutical, food, cosmetic, and other industries. However, the issue of early bolting has emerged as a major hindrance to its production. This problem not only reduces the yield of A. dahurica, but also has an impact on its active ingredients. To date, the molecular factors that contribute to early bolting and its impact on the growth of A. dahurica have not been thoroughly investigated. Therefore, we conducted a transcriptome study using the Illumina NovaSeq 6000 on two developmental types: early-bolting and non-bolting (normal) roots of A. dahurica. We obtained 2,185 up-regulated and 1,414 down-regulated genes in total. Many of the identified transcripts were related to genes involved in early bolting. The gene ontology analysis revealed several differentially expressed genes that are crucial in various pathways, primarily associated with cellular, molecular, and biological processes. Additionally, the morphological characteristics and coumarin content in the early bolting roots of A. dahurica were significantly altered. This study provides insight into the transcriptomic regulation of early bolting in A. dahurica, which can potentially be utilized to enhance its medicinal properties.

摘要

白芷(Fisch. ex Hoffm.)Benth.et Hook.f.var.formosana(Boiss.)Shan et Yuan(A. dahurica)是一种广受欢迎的药用植物,在制药、食品、化妆品等行业有广泛的应用。然而,早期抽薹问题已成为其生产的主要障碍。这个问题不仅降低了白芷的产量,也影响了其有效成分。迄今为止,导致早期抽薹的分子因素及其对白芷生长的影响尚未得到深入研究。因此,我们使用 Illumina NovaSeq 6000 对两种发育类型(早期抽薹和非抽薹(正常)白芷根)进行了转录组研究。我们总共获得了 2185 个上调基因和 1414 个下调基因。许多鉴定的转录物与早期抽薹相关的基因有关。基因本体分析揭示了几个差异表达基因在各种途径中至关重要,主要与细胞、分子和生物学过程有关。此外,早期抽薹白芷根的形态特征和香豆素含量也发生了显著变化。本研究深入了解了白芷早期抽薹的转录组调控,这可能有助于提高其药用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9cf/10185517/5da4ff121951/41598_2023_34554_Fig1_HTML.jpg

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