System network analysis of Rosmarinus officinalis transcriptome and metabolome—Key genes in biosynthesis of secondary metabolites

Author:

Moghadam AliORCID,Foroozan Eisa,Tahmasebi Ahmad,Taghizadeh Mohammad Sadegh,Bolhassani Mohammad,Jafari Morteza

Abstract

Medicinal plants contain valuable compounds that have attracted worldwide interest for their use in the production of natural drugs. The presence of compounds such as rosmarinic acid, carnosic acid, and carnosol in Rosmarinus officinalis has made it a plant with unique therapeutic effects. The identification and regulation of the biosynthetic pathways and genes will enable the large-scale production of these compounds. Hence, we studied the correlation between the genes involved in biosynthesis of the secondary metabolites in R. officinalis using proteomics and metabolomics data by WGCNA. We identified three modules as having the highest potential for the metabolite engineering. Moreover, the hub genes highly connected to particular modules, TFs, PKs, and transporters were identified. The TFs of MYB, C3H, HB, and C2H2 were the most likely candidates associated with the target metabolic pathways. The results indicated that the hub genes including Copalyl diphosphate synthase (CDS), Phenylalanine ammonia lyase (PAL), Cineole synthase (CIN), Rosmarinic acid synthase (RAS), Tyrosine aminotransferase (TAT), Cinnamate 4-hydroxylase (C4H), and MYB58 are responsible for biosynthesis of important secondary metabolites. Thus, we confirmed these results using qRT-PCR after treating R. officinalis seedlings with methyl jasmonate. These candidate genes may be employed for genetic and metabolic engineering research to increase R. officinalis metabolite production.

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference95 articles.

1. Heinrich M, Williamson EM, Gibbons S, Barnes J, Prieto-Garcia J. Fundamentals of Pharmacognosy and Phytotherapy E-Book: Elsevier Health Sciences; 2017.

2. Seasonal variability in essential oil composition and biological activity of Rosmarinus officinalis L. accessions in the western Himalaya;S Rathore;Scientific Reports,2022

3. Rosemary (Rosmarinus officinalis L.): extraction techniques, analytical methods and health-promoting biological effects;S Lešnik;Phytochemistry Reviews,2021

4. Rosmarinus officinalis L.: an update review of its phytochemistry and biological activity;JM Andrade;Future science OA,2018

5. An in-depth review on the medicinal flora Rosmarinus officinalis (Lamiaceae);A Begum;Acta scientiarum polonorum Technologia alimentaria,2013

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