Potential of utilizing pathogen‐derived mycotoxins as alternatives of synthetic herbicides in controlling the noxious invasive plant Xanthium italicum

Open Access
Authors
  • Caixia Han
  • Osama Abdalla Abdelshafy Mohamad
  • Hua Shao
Publication date 01-2024
Journal Pest Management Science
Volume | Issue number 80 | 1
Pages (from-to) 122-132
Number of pages 11
Organisations
  • Faculty of Science (FNWI) - Institute for Biodiversity and Ecosystem Dynamics (IBED)
Abstract
Discovery of environmentally friendly agents for controlling alien invasive species (AIS) is challenging and in urgent need as their expansion continues to increase. Xanthium italicum is a notorious invasive weed that has caused serious ecological and economic impacts worldwide. For the purpose of exploring the possibility of utilizing herbicidal mycotoxins to control this species, three compounds, a new compound, curvularioxide (1), a new naturally occurring compound, dehydroradicinin (2), and a known compound, radicinin (3), were isolated via activity-guided fractionation from the secondary metabolites of the pathogenic Curvularia inaequalis, which was found to infect X. italicum in natural habitats. All isolated compounds exhibited potent herbicidal activity on receiver species. It is noteworthy to mention that their effects on X. italicum in our bioassays were equivalent to the commercial herbicide glyphosate. Subsequent morphological analysis revealed that application of radicinin (3) severely hindered X. italicum seedlings' hypocotyl and root development. Malondialdehyde content and the activity of catalase and peroxidase of the seedlings were also significantly different from the control, implying the occurrence of induced oxidative stress. Our results suggest that pathogens infecting invasive plants might be valuable resources for developing safer herbicides for controlling weeds.
Document type Article
Note In special issue: The Future of Microbial Bioherbicides. - With supplemental material.
Language English
Published at https://doi.org/10.1002/ps.7499
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