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Inhibition of Aspergillus flavus Growth and Aflatoxin Production in Transgenic Maize Expressing the α-amylase Inhibitor from Lablab purpureus L.
Published on: February 15, 2019
Abstract:
Mycotoxins are secondary metabolites of microfungi that are known to cause sickness or death in humans or animals. Although many such toxic metabolites are known, it is generally agreed that only a few are significant in causing disease: aflatoxins, fumonisins, ochratoxin A, deoxynivalenol, zearalenone, and ergot alkaloids. These toxins are produced by just a few species from the common genera Aspergillus, Penicillium, Fusarium, and Claviceps. All Aspergillus and Penicillium species either are commensals, growing in crops without obvious signs of pathogenicity, or invade crops after harvest and produce toxins during drying and storage. In contrast, the important Fusarium and Claviceps species infect crops before harvest. The most important Aspergillus species, occurring in warmer climates, are A. flavus and A. parasiticus, which produce aflatoxins in maize, groundnuts, tree nuts, and, less frequently, other commodities. The main ochratoxin A producers, A. ochraceus and A. carbonarius, commonly occur in grapes, dried vine fruits, wine, and coffee. Penicillium verrucosum also produces ochratoxin A but occurs only in cool temperate climates, where it infects small grains. F. verticillioides is ubiquitous in maize, with an endophytic nature, and produces fumonisins, which are generally more prevalent when crops are under drought stress or suffer excessive insect damage. It has recently been shown that Aspergillus niger also produces fumonisins, and several commodities may be affected. F. graminearum, which is the major producer of deoxynivalenol and zearalenone, is pathogenic on maize, wheat, and barley and produces these toxins whenever it infects these grains before harvest. Also included is a short section on Claviceps purpurea, which produces sclerotia among the seeds in grasses, including wheat, barley, and triticale. The main thrust of the chapter contains information on the identification of these fungi and their morphological characteristics, as well as factors influencing their growth and the various susceptible commodities that are contaminated. Finally, decision trees are included to assist the user in making informed choices about the likely mycotoxins present in the various crops.
Insights
This study details significant mycotoxins like aflatoxins and fumonisins, their producing fungi (Aspergillus, Fusarium), and contamination in crops. It provides identification methods and decision trees for managing mycotoxin risks in food and feed.
Area of Science:
- Agricultural Science
- Food Safety
- Mycology
Background:
- Mycotoxins are toxic fungal metabolites impacting human and animal health.
- Key mycotoxins include aflatoxins, fumonisins, ochratoxin A, deoxynivalenol, zearalenone, and ergot alkaloids.
- These are produced by common fungal genera: Aspergillus, Penicillium, Fusarium, and Claviceps.
Purpose of the Study:
- To provide comprehensive information on significant mycotoxins and their producing fungi.
- To detail fungal identification, morphology, and factors influencing mycotoxin production.
- To identify susceptible commodities and offer decision trees for mycotoxin risk assessment.
Main Methods:
- Review of scientific literature on mycotoxin-producing fungi and their metabolites.
- Analysis of fungal species, their geographic distribution, and preferred commodities.
- Development of identification keys and decision trees for practical application.
Main Results:
- Identification of key mycotoxin-producing species within Aspergillus, Penicillium, Fusarium, and Claviceps genera.
- Correlation of specific mycotoxins with fungal species, climate conditions, and crop types (e.g., aflatoxins in maize, ochratoxin A in grapes/coffee, fumonisins in maize, DON/zearalenone in cereals).
- Information on pre-harvest vs. post-harvest contamination and factors influencing toxin accumulation.
Conclusions:
- Accurate identification of mycotoxin-producing fungi is crucial for food and feed safety.
- Understanding environmental and agricultural factors aids in predicting and mitigating mycotoxin contamination.
- Decision trees offer a valuable tool for risk management in diverse agricultural settings.
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