← Explorer/Network

Biological detoxification of fungal toxins and its use in plant breeding, feed and food production

Karlovsky P1997Natural ToxinsReview
10.1002/(sici)1522-7189(199902)7:1<1::aid-nt37>3.0.co;2-9PubMed
Mycotoxins

Abstract

Enzymatic inactivation of fungal toxins is an attractive strategy for the decontamination of agricultural commodities and for the protection of crops from phytotoxic effects of fungal metabolites. This review summarizes research on the biological detoxification of fungal toxins by microorganisms and plants and its practical applications. Some mycotoxins are detoxified during ensiling and other fermentation processes (aflatoxins, alternariol, mycophenolic acid, patulin, PR toxin) while others are transformed into toxic products or survive fermentation unchanged. Plants can detoxify fomannoxin, fusaric acid, HC-toxin, ochratoxin A and oxalate but the degradation of deoxynivalenol has yet to be proven. Microflora of the digestive tract of vertebrates and invertebrates exhibit detoxification activities towards aflatoxins, ochratoxin A, oxalate and trichothecenes. Some toxin-producing fungi are able to degrade or transform their own products under suitable conditions. Pure cultures of bacteria and fungi which detoxify mycotoxins have been isolated from complex microbial populations by screening and enrichment culture techniques. Genes responsible for some of the detoxification activities have been cloned and expressed in heterologous hosts. The detoxification of aflatoxins, cercosporin, fumonisins, fusaric acid, ochratoxin A, oxalic acid, patulin, trichothecenes and zearalenone by pure cultures is reviewed. Finally, current application of these results in food and feed production and plant breeding is summarized and expected future developments are outlined.

Cited By (5)

  • Strategies to prevent mycotoxin contamination of food and animal feed: a reviewCritical Reviews in Food Science and Nutrition · 2006
  • Mycotoxin-degradation profile of Rhodococcus strainsInternational Journal of Food Microbiology · 2013
  • Biological strategies to counteract the effects of mycotoxinsJournal of Food Protection · 2009
  • Reduction in fusarium toxin levels in corn silage with low dry matter and storage timeJournal of Agricultural and Food Chemistry · 2008
  • In vitrostudies on the evaluation of mycotoxin detoxifying agents for their efficacy on deoxynivalenol and zearalenoneArchives of Animal Nutrition · 2004

References (1)

  • Invited Review: TOXICOLOGY OF DEOXYNIVALENOL (VOMITOXIN)Journal of Toxicology and Environmental Health · 1996

Related Papers

  • The Efficacy of a Novel Water-Soluble Anti-Mycotoxin Solution in Improving Broiler Chicken Performance Under Mycotoxin ChallengeToxins · 2025 · 1 shared tag
  • Analysis of mold and mycotoxins in naturally infested indoor building materialsMycotoxin Research · 2022 · 1 shared tag
  • A Comprehensive Genetic Analysis of Mycotoxin-Producing Penicillium expansum Isolated from River Water Using Molecular Profiling, DNA Barcoding, and Secondary Structure PredictionNature Environment and Pollution Technology · 2024 · 1 shared tag
  • Role of microbial volatile compounds (mVOCs) in toxicity from molds-infested buildings: a case reportArchives of Clinical Toxicology · 2026 · 1 shared tag
  • The Silent Threat: Understanding Microbial Toxins and Their Global ImpactsGlobal Journal of Multidisciplinary Sciences and Arts · 2024 · 1 shared tag
  • Climate Change Impacts on Environmental Toxins, and Its Health Effects2025 ·
1 shared tag