The Effect of the Stress-Signalling Mediator Triacontanol on Biochemical and Physiological Modifications in Dracocephalum forrestii Culture

Int J Mol Sci. 2022 Dec 2;23(23):15147. doi: 10.3390/ijms232315147.

Abstract

Triacontanol (TRIA) has been reported to influence signal transduction in the crosstalk triggered by various stress factors. As a signal player, it is also known to affect many physiological processes, including enhancing the biosynthesis of secondary metabolites. Such knowledge can be used to direct or boost the production of bioactive secondary compounds without stress induction. Therefore, the aim of this study is to evaluate the use of TRIA as a factor stimulating the growth and production of bioactive compounds in the shoot culture of Dracocephalum forrestii. TRIA was applied at three concentrations (2.5, 5, and 10 µM), alone or in combination with phytohormones (6-benzylaminopurine and indole-3-acetic acid). After five weeks, growth and physiochemical parameters (chlorophyll content, antioxidant enzyme activity, and phenolic acid level) were determined. The results indicate that TRIA application significantly increased shoot dry weight, chlorophyll content, antioxidant enzyme activities (superoxide dismutase, peroxidase, and catalase), and total polyphenol level; it also influenced the multiplication ratio in combination with growth regulators. The greatest antioxidant enzyme activity was observed for 5 µM TRIA in hormone-free medium, while the most significant secondary metabolite production was obtained for phytohormone-containing medium supplemented with 10 µM TRIA: total phenolic acid content (19.4 mg/g dry weight) was twice that of the control. Hence, the TRIA application appears to be a valuable biotechnology technique for modifying plant metabolite production.

Keywords: Dracocephalum forestii; biologically active compounds; in vitro culture; phytohormones; plant secondary metabolites; rosmarinic acid; triacontanol.

MeSH terms

  • Antioxidants / pharmacology
  • Chlorophyll
  • Fatty Alcohols* / pharmacology
  • Plant Growth Regulators* / pharmacology
  • Signal Transduction

Substances

  • phenolic acid
  • 1-triacontanol
  • Fatty Alcohols
  • Plant Growth Regulators
  • Antioxidants
  • Chlorophyll

Supplementary concepts

  • Dracocephalum forrestii

Grants and funding

This research was supported by Medical University of Lodz, a Grant No. 503/3-012-01/503-31-001-19-00.