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Updated: Aug 12, 2026

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Quantification of Fungal Colonization, Sporogenesis, and Production of Mycotoxins Using Kernel Bioassays
Published on: April 23, 2012
Beyond the visible lesion: mycotoxin attenuation and spatial heterogeneity in maize cobs
Bertha Kachala1,2, Limbikani Matumba3, Lindy J Rose4
1FoodPlus research group, Faculty of Life Science and Natural Resources, Lilongwe University of Agriculture and Natural Resources (LUANAR), Box 143, Lilongwe, Malawi. bkachala@luanar.ac.mw.
Mycotoxin Research
|August 11, 2026
Summary
Visible mould on maize cobs is a warning sign, but not a precise boundary for mycotoxin contamination. Residual toxins extend beyond the visible mould, necessitating whole cob rejection for effective food safety.
Area of Science:
- Agricultural Science
- Food Science
- Mycology
Background:
- Visible mould is commonly used to sort maize, but its reliability in indicating the extent of mycotoxin contamination is uncertain.
- Mycotoxins pose significant risks to human and animal health, necessitating accurate detection and control measures.
Purpose of the Study:
- To investigate mycotoxin attenuation and spatial distribution in relation to visible mould margins on maize cobs.
- To assess the co-occurrence of different mycotoxins within contaminated maize cob sections.
Main Methods:
- Quantification of multiple mycotoxins (FUMs, DON, ZEA, NIV, AFB1) using liquid chromatography tandem mass spectrometry.
- Sampling of maize cob sections at varying distances from visible mould margins (0 mm, 50%, 75%).
- Analysis of mycotoxin levels, spatial heterogeneity, and co-occurrence patterns.
Main Results:
- Visible mould margins contained the majority of mycotoxins (e.g., 84.4% total FUM, 89.4% DON).
- Significant levels of mycotoxins (e.g., 15.6% total FUM, 22.2% ZEA) were found in sections beyond the visible mould.
- DON, ZEA, and NIV decreased with distance, but total FUM did not show significant attenuation; co-contamination was frequent.
Conclusions:
- Visible mould serves as an indicator but not a definitive toxicological boundary for mycotoxin contamination in maize.
- Whole cob rejection or segregation of visibly mouldy maize is a more effective food safety strategy than trimming affected areas.
- Further research into mycotoxin spread and control in maize is warranted.
