2023ChemistrySelectOpen access

Airborne Methyl Jasmonate is Metabolized to Jasmonic Acid and 12‐Hydroxyjasmonic Acid, and Induces Jasmonate Biosynthesis in Marchantia polymorpha

Hiromu Tsuzuki, Naoki Kitaoka, Shiro Inoue, Kosaku Takahashi, Hideyuki Matsuura

Open full text 5 citations

Abstract

Abstract Methyl jasmonate (MeJA) is a volatile jasmonate compound commonly used to induce defense responses in spermatophytes. This study reports that airborne MeJA‐d 3 , deuterated MeJA, increases the levels of (dinor‐)12‐oxo‐phytodienoic acids [(dn‐)OPDAs] and jasmonic acid (JA) as well as JA‐d 3 and 12‐hydroxyjasmonic acid‐d 2 (12‐OH‐JA‐d 2 ), MeJA‐d 3 metabolites, in the model bryophyte Marchantia polymorpha . Enhancement of JA biosynthesis was substantiated by the expression of JA biosynthetic genes induced by airborne MeJA. Additionally, each of enantiomers, (+)‐MeJA and (−)‐MeJA, was observed to induce the accumulation of JA and (dn‐)OPDAs in M. polymorpha . This study demonstrates that airborne MeJA is metabolized to JA and 12‐OH‐JA, and induces JA biosynthesis in M. polymorpha . Moreover, the transient increase in endogenous JA level after airborne MeJA treatment provides concrete evidence that M. polymorpha biosynthesizes JA.

Open-access reader

About this research paper

What this paper is about

Abstract Methyl jasmonate (MeJA) is a volatile jasmonate compound commonly used to induce defense responses in spermatophytes. This study reports that airborne MeJA‐d 3 , deuterated MeJA, increases the levels of (dinor‐)12‐oxo‐phytodienoic acids [(dn‐)OPDAs] and jasmonic acid (JA) as well as JA‐d 3 and 12‐hydroxyjasmonic acid‐d 2 (12‐OH‐JA‐d 2 ), MeJA‐d 3 metabolites, in the model bryophyte Marchantia polymorpha . Enhancement of JA biosynthesis was substantiated by the expression of JA biosynthetic genes induced by airborne MeJA. Additionally, each of enantiomers, (+)‐MeJA and (−)‐MeJA, was observed to induce the accumulation of JA and (dn‐)OPDAs in M. polymorpha . This study demonstrates that airborne MeJA is metabolized to JA and 12‐OH‐JA, and induces JA biosynthesis in M. polymorpha . Moreover, the transient increase in endogenous JA level after airborne MeJA treatment provides concrete evidence that M. polymorpha biosynthesizes JA.

Why it matters

OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Abstract Methyl jasmonate (MeJA) is a volatile jasmonate compound commonly used to induce defense responses in spermatophytes. This study reports that airborne MeJA‐d 3 , deuterated MeJA, increases the levels of (dinor‐)12‐oxo‐phytodienoic acids [(dn‐)OPDAs] and jasmonic acid (JA) as well as JA‐d 3 and 12‐hydroxyjasmonic acid‐d 2 (12‐OH‐JA‐d 2 ), MeJA‐d 3 metabolites, in the model bryophyte Marchantia polymorpha . Enhancement of JA biosynthesis was substantiated by the expression of JA biosynthetic genes induced by airborne MeJA. Additionally, each of enantiomers, (+)‐MeJA and (−)‐MeJA, was observed to induce the accumulation of JA and (dn‐)OPDAs in M. polymorpha . This study demonstrates that airborne MeJA is metabolized to JA and 12‐OH‐JA, and induces JA biosynthesis in M. polymorpha . Moreover, the transient increase in endogenous JA level after airborne MeJA treatment provides concrete evidence that M. polymorpha biosynthesizes JA.

Key concepts: Methyl jasmonate, Jasmonic acid, Jasmonate, Biosynthesis, Marchantia polymorpha, Chemistry, Biochemistry, Oxylipin

Related papers

Back to paper searchBrowse research topicsOriginal source
Airborne Methyl Jasmonate is Metabolized to Jasmonic Acid and 12‐Hydroxyjasmonic Acid, and Induces Jasmonate Biosynthesis in Marchantia polymorpha — Research Paper | ScholarLens