Stone fruit phenolic and triterpenoid compounds modulate gene expression of Monilinia spp. in culture media

Fungal Biol. 2023 Jul-Aug;127(7-8):1085-1097. doi: 10.1016/j.funbio.2023.06.004. Epub 2023 Jun 7.

Abstract

Phenolic and triterpenoid compounds are essential components in stone fruit skin and flesh tissues. They are thought to possess general antimicrobial activity. However, regarding brown rot disease, investigations were only confined to a limited number of phenolics, especially chlorogenic acid. The activity of triterpenoids against Monilinia spp., as an essential part of the peach cuticular wax, has not been studied before. In this work, the anti-fungal effect of some phenolics, triterpenoids, and fruit surface compound (FSC) extracts of peach fruit at two developmental stages were investigated on Monilinia fructicola and Monilinia laxa characteristics during in vitro growth. A new procedure for assaying anti-fungal activity of triterpenoids, which are notoriously difficult to assess in vitro because of their hydrophobicity, has been developed. Measurements of colony diameter, sporulation, and germination of second-generation conidia were recorded. Furthermore, the expression of twelve genes of M. fructicola associated with germination and/or appressorium formation and virulence-related genes was studied relative to the presence of the compounds. The study revealed that certain phenolics and triterpenoids showed modest anti-fungal activity while dramatically modulating gene expression in mycelium of M. fructicola on culture medium. MfRGAE1 gene was overexpressed by chlorogenic and ferulic acids and MfCUT1 by betulinic acid, at 4- and 7- days of mycelium incubation. The stage II FSC extract, corresponding to the period when the fruit is resistant to Monilinia spp., considerably up-regulated the MfLAE1 gene. These findings effectively contribute to the knowledge of biochemical compounds effects on fungi on in vitro conditions.

Keywords: Anti-fungal activity; Gene expression; Monilinia fructicola; Monilinia laxa; Phenolics; Triterpenoids; Virulence-related genes.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Culture Media
  • Fruit* / microbiology
  • Gene Expression
  • Plant Diseases / microbiology
  • Prunus persica* / microbiology

Substances

  • Culture Media