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转录组学与靶向代谢组学相结合揭示了葛根块根膨大过程中内源激素的变化。

Transcriptomics integrated with targeted metabolomics reveals endogenous hormone changes in tuberous root expansion of Pueraria.

机构信息

College of Agronomy, Jiangxi Agricultural University, Nanchang, 330045, China.

School of Pharmacy, Jiangxi University of Traditional Chinese Medicine, Nanchang, 330004, China.

出版信息

BMC Genomics. 2024 Nov 19;25(1):1112. doi: 10.1186/s12864-024-11010-w.

Abstract

BACKGROUND

Pueraria is a widely cultivated medicinal and edible homologous plant in Asia, and its tuberous roots are commonly used in the food, nutraceutical, and pharmaceutical industries. "Gange No. 5" is a local variety of Pueraria montana var. thomsonii (Bentham) M.R. Almeida (PMT) in Jiangxi Province, China. After optimizing its cultivation technique, we shortened the cultivation cycle of this variety from two years to one year, suggesting that the regulatory mechanism of the endogenous hormone system during tuberous root expansion may have changed significantly. In this study, we focused on the molecular mechanisms of endogenous hormones in promoting tuberous root expansion during one-year cultivation of "Gange No. 5".

RESULTS

The mid-late expansion period (S4) is critical for the rapid swelling of "Gange No. 5" tuberous roots during annual cultivation. At S4, the number of cells increased dramatically and their volume enlarged rapidly in the tuberous roots, the fresh weight of a single root quickly increased, and the contents of multiple nutrients (total protein, total phenol, isoflavones) and medicinal components (puerarin, puerarin apigenin, and soy sapogenin) were at their peak values. We compared the transcriptomes and metabolomes of S1 (the pre-expansion period), S4, and S6 (the final expansion period), and screened 42 differentially accumulated hormone metabolites and 1,402 differentially expressed genes (DEGs) associated with hormone biosynthesis, metabolism, and signaling. Most Auxin, cytokinins (CKs), jasmonic acids (JAs), salicylic acid (SA), melatonin (MLT), and ethylene (ETH), reached their maximum levels at S1 and then gradually decreased; however, abscisic acid (ABA) appeared in S6, indicating that most of the endogenous hormones may play a key role in regulating the initiation of tuberous root expansion, while ABA mainly promotes tuberous root maturation. Notably, multiple key genes of the 'Tryptophan metabolism' pathway (ko00380) were significantly differentially expressed, and COBRA1, COBRA2, YUCCA10, IAA13, IAA16, IAA20, IAA27, VAN3, ACAA2, and ARF were also identified to be significantly correlated with the expansion of "Gange No. 5" tuberous roots.

CONCLUSIONS

Our study has revealed how endogenous hormone regulation affects the expansion of "Gange No. 5" tuberous roots. These findings offer a theoretical foundation for improving the yield of PMT tuberous roots.

摘要

背景

葛根是亚洲广泛种植的药用和食用同源植物,其块根常用于食品、营养保健品和制药行业。“冈葛 5 号”是中国江西省的一种本地野葛块根品种(Pueraria montana var. thomsonii (Bentham) M.R. Almeida)。经过优化栽培技术,我们将该品种的栽培周期从两年缩短到一年,这表明块根扩张过程中内源激素系统的调控机制可能发生了显著变化。在这项研究中,我们专注于“冈葛 5 号”一年栽培过程中内源激素促进块根扩张的分子机制。

结果

中晚期扩展期(S4)是“冈葛 5 号”块根在一年生栽培过程中快速膨胀的关键时期。在 S4 时期,块根中细胞数量急剧增加,体积迅速增大,单根鲜重迅速增加,多种营养物质(总蛋白、总酚、异黄酮)和药用成分(葛根素、葛根素芹菜素、大豆皂甙元)的含量达到峰值。我们比较了 S1(预扩展期)、S4 和 S6(最终扩展期)的转录组和代谢组,筛选出 42 种差异积累的激素代谢物和 1402 个与激素生物合成、代谢和信号转导相关的差异表达基因(DEGs)。大多数生长素、细胞分裂素(CKs)、茉莉酸(JAs)、水杨酸(SA)、褪黑素(MLT)和乙烯(ETH)在 S1 时达到最大值,然后逐渐降低;然而,脱落酸(ABA)出现在 S6 时,表明大多数内源激素可能在调节块根扩张的启动中发挥关键作用,而 ABA 主要促进块根成熟。值得注意的是,“色氨酸代谢”途径(ko00380)的多个关键基因表达差异显著,同时还鉴定出 COBRA1、COBRA2、YUCCA10、IAA13、IAA16、IAA20、IAA27、VAN3、ACAA2 和 ARF 与“冈葛 5 号”块根的扩张显著相关。

结论

本研究揭示了内源激素调控如何影响“冈葛 5 号”块根的扩张。这些发现为提高野葛块根产量提供了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e620/11577955/04909bde0da7/12864_2024_11010_Fig1_HTML.jpg

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