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Measuring Volatile and Non-volatile Antifungal Activity of Biocontrol Products
Published on: December 5, 2020
Three Antifungal Proteins From Penicillium expansum: Different Patterns of Production and Antifungal Activity
Sandra Garrigues1, Mónica Gandía1, Laia Castillo2
1Department of Biotechnology, Instituto de Agroquímica y Tecnología de Alimentos, Consejo Superior de Investigaciones Científicas, Valencia, Spain.
Abstract:
Antifungal proteins of fungal origin (AFPs) are small, secreted, cationic, and cysteine-rich proteins. Filamentous fungi encode a wide repertoire of AFPs belonging to different phylogenetic classes, which offer a great potential to develop new antifungals for the control of pathogenic fungi. The fungus Penicillium expansum is one of the few reported to encode three AFPs each belonging to a different phylogenetic class (A, B, and C). In this work, the production of the putative AFPs from P. expansum was evaluated, but only the representative of class A, PeAfpA, was identified in culture supernatants of the native fungus. The biotechnological production of PeAfpB and PeAfpC was achieved in Penicillium chrysogenum with the P. chrysogenum-based expression cassette, which had been proved to work efficiently for the production of other related AFPs in filamentous fungi. Western blot analyses confirmed that P. expansum only produces PeAfpA naturally, whereas PeAfpB and PeAfpC could not be detected. From the three AFPs from P. expansum, PeAfpA showed the highest antifungal activity against all fungi tested, including plant and human pathogens. P. expansum was also sensitive to its self-AFPs PeAfpA and PeAfpB. PeAfpB showed moderate antifungal activity against filamentous fungi, whereas no activity could be attributed to PeAfpC at the conditions tested. Importantly, none of the PeAFPs showed hemolytic activity. Finally, PeAfpA was demonstrated to efficiently protect against fungal infections caused by Botrytis cinerea in tomato leaves and Penicillium digitatum in oranges. The strong antifungal potency of PeAfpA, together with the lack of cytotoxicity, and significant in vivo protection against phytopathogenic fungi that cause postharvest decay and plant diseases, make PeAfpA a promising alternative compound for application in agriculture, but also in medicine or food preservation.
Insights
Antifungal proteins from Penicillium expansum (PeAFPs) were studied. PeAfpA showed potent antifungal activity against pathogens and protected plants, indicating its potential for agriculture and medicine.
Area of Science:
- Mycology
- Biotechnology
- Protein Chemistry
Background:
- Filamentous fungi produce antifungal proteins (AFPs) with potential for controlling pathogenic fungi.
- Penicillium expansum encodes three distinct AFP classes (A, B, C).
Purpose of the Study:
- To evaluate the production and antifungal activity of AFPs from P. expansum.
- To assess the biotechnological production and efficacy of PeAfpB and PeAfpC.
- To determine the potential of PeAFPs as antifungal agents.
Main Methods:
- Investigated native P. expansum AFP production via culture supernatants and Western blots.
- Achieved biotechnological production of PeAfpB and PeAfpC in P. chrysogenum.
- Assessed antifungal activity against plant and human pathogens, and hemolytic activity.
- Evaluated in vivo protection against Botrytis cinerea and Penicillium digitatum.
Main Results:
- P. expansum naturally produces only PeAfpA; PeAfpB and PeAfpC were not detected.
- PeAfpA exhibited the highest antifungal activity against tested fungi and demonstrated in vivo efficacy.
- PeAfpB showed moderate activity, while PeAfpC had no significant activity under tested conditions.
- No hemolytic activity was observed for any PeAFPs.
Conclusions:
- PeAfpA is a potent, non-hemolytic antifungal agent with significant in vivo protective capabilities.
- PeAfpA represents a promising candidate for agricultural, medicinal, and food preservation applications.
- Biotechnological production of PeAfpB and PeAfpC is feasible, though their antifungal potential requires further investigation.
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