Multi-omics analysis uncovers the transcriptional regulatory mechanism of magnesium Ions in the synthesis of active ingredients in Sophora tonkinensis.

Sci Rep

Guangxi Key Laboratory of Medicinal Resources Protection and Genetic Improvement, Guangxi Engineering Research Center of TCM Resource Intelligent Creation, National Center for TCM Inheritance and Innovation, Guangxi Botanical Garden of Medicinal Plants, Nanning, 530023, China.

Published: October 2024

AI Article Synopsis

  • Magnesium is crucial for plant health as it is a key part of chlorophyll and acts as a coenzyme, but its regulatory role in secondary metabolite synthesis is not fully understood.
  • The study focuses on Sophora tonkinensis, a medicinal plant in China, analyzing how different magnesium concentrations in tissue-cultured seedlings affect their secondary metabolites and overall growth.
  • By using multi-omics data analysis, the research reveals the complex ways magnesium influences metabolic pathways, which in turn affects the levels of beneficial compounds and the growth of the plant.

Article Abstract

Magnesium (Mg) plays a pivotal role as an essential component of plant chlorophyll and functions as a critical coenzyme. However, research exploring the regulatory mechanisms of magnesium ions on the synthesis of secondary metabolites is still in its early stages. Sophora tonkinensis is a widely utilized medicinal plant in China, recognized for its diverse secondary metabolites with active properties. This study investigates variations in these ingredients in tissue-cultured seedlings under varying magnesium concentrations. Simultaneously, an omics data analysis was conducted on tissue-cultured seedlings subjected to treatments with magnesium and low magnesium. These comprehensive omics analyses aimed to elucidate the mechanisms through which magnesium influences active components, growth, and development. Magnesium exerts a pervasive influence on various metabolic pathways, forming an intricate network. Research findings indicate that magnesium impacts diverse metabolic processes, including the absorption of potassium and calcium, as well as photosynthetic activity. Consequently, these influences lead to discernible changes in the levels of pharmacologically active compounds and the growth and developmental status.This study is the first to employ a multi-omics data analysis in S. tonkinensis. This methodology allows us to uncover the overarching impact of metabolic networks on the levels of various active ingredients and specific phenotypes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11513012PMC
http://dx.doi.org/10.1038/s41598-024-76575-8DOI Listing

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