Detection and assessment of chemical hormesis on the radial growth in Vitro of oomycetes and fungal plant pathogens


Abstract:

Although plant diseases can be caused by bacteria, viruses, and protists, most are caused by fungi and fungus-like oomycetes. Intensive use of fungicides with the same mode of action can lead to selection of resistant strains increasing the risk of unmanageable epidemics. In spite of the integrated use of nonchemical plant disease management strategies, agricultural productivity relies heavily on the use of chemical pesticides and biocides for disease prevention and treatment and sanitation of tools and substrates. Despite the prominent use of fungi in early hormesis studies and the continuous use of yeast as a research model, the relevance of hormesis in agricultural systems has not been investigated by plant pathologists, until recently. A protocol was standardized for detection and assessment of chemical hormesis in fungi and oomycetes using radial growth as endpoint. Biphasic dose-responses were observed in Pythium aphanidermatum exposed to subinhibitory doses of ethanol, cyazofamid, and propamocarb, and in Rhizoctonia zeae exposed to ethanol. This report provides an update on chemical hormesis in fungal plant pathogens and a perspective on the potential risks it poses to crop productivity and global food supply. © 2013 University of Massachusetts.

Año de publicación:

2013

Keywords:

  • Biphasic
  • Plant pathogen
  • Low-dose
  • Chemical hormesis
  • Growth stimulation
  • Oomycetes
  • fungi

Fuente:

scopusscopus

Tipo de documento:

Article

Estado:

Acceso abierto

Áreas de conocimiento:

  • Fitopatología
  • Microbiología
  • Microbiología

Áreas temáticas:

  • Lesiones, enfermedades y plagas de las plantas
  • Microorganismos, hongos y algas
  • Bioquímica