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Updated: May 5, 2026

Establishing Fungal Entomopathogens as Endophytes: Towards Endophytic Biological Control
Published on: April 11, 2013
Endophytic Fungi: A Treasure Trove of Antifungal Metabolites
Sanjai Saxena1,2, Laurent Dufossé3, Sunil K Deshmukh2,4
1Department of Biotechnology, Thapar Institute of Engineering and Technology, Patiala 147004, Punjab, India.
Abstract:
Emerging and reemerging fungal infections are very common in nosocomial and non-nosocomial settings in people having poor immunogenic profiles either due to hematopoietic stem cell transplants or are using immunomodulators to treat chronic inflammatory disease or autoimmune disorders, undergoing cancer therapy or suffering from an immune weakening disease like HIV. The refractory behavior of opportunistic fungi has necessitated the discovery of unconventional antifungals. The emergence of black fungus infection during COVID-19 also triggered the antifungal discovery program. Natural products are one of the alternative sources of antifungals. Endophytic fungi reside and co-evolve within their host plants and, therefore, offer a unique bioresource of novel chemical scaffolds with an array of bioactivities. Hence, immense possibilities exist that these unique chemical scaffolds expressed by the endophytic fungi may play a crucial role in overcoming the burgeoning antimicrobial resistance. These chemical scaffolds so expressed by these endophytic fungi comprise an array of chemical classes beginning from cyclic peptides, sesquiterpenoids, phenols, anthraquinones, coumarins, etc. In this study, endophytic fungi reported in the last six years (2018-2023) have been explored to document the antifungal entities they produce. Approximately 244 antifungal metabolites have been documented in this period by different groups of fungi existing as endophytes. Various aspects of these antifungal metabolites, such as antifungal potential and their chemical structures, have been presented. Yet another unique aspect of this review is the exploration of volatile antifungal compounds produced by these endophytic fungi. Further strategies like epigenetic modifications by chemical as well as biological methods and OSMAC to induce the silent gene clusters have also been presented to generate unprecedented bioactive compounds from these endophytic fungi.
Insights
Endophytic fungi produce numerous antifungal compounds, offering novel solutions against drug-resistant infections. This review highlights 244 metabolites discovered between 2018-2023, including volatile compounds, to combat challenging fungal diseases.
Area of Science:
- Mycology
- Natural Product Chemistry
- Antimicrobial Resistance
Background:
- Opportunistic fungal infections are increasing, particularly in immunocompromised individuals, necessitating new antifungal treatments.
- The rise of black fungus infections and antimicrobial resistance highlights the urgent need for novel antifungal agents.
- Endophytic fungi, residing within plants, represent a promising source of unique bioactive compounds.
Purpose of the Study:
- To review and document antifungal metabolites produced by endophytic fungi from 2018 to 2023.
- To explore the potential of endophytic fungi in discovering novel antifungals to combat drug resistance.
- To investigate volatile antifungal compounds and strategies for inducing silent gene clusters in endophytic fungi.
Main Methods:
- Systematic literature review of studies published between 2018 and 2023 on endophytic fungi and their antifungal metabolites.
- Documentation and analysis of reported antifungal metabolites, including their chemical structures and bioactivities.
- Exploration of volatile antifungal compounds and methods for enhancing the production of novel bioactive compounds.
Main Results:
- Approximately 244 antifungal metabolites were identified from various endophytic fungal species during the review period.
- Diverse chemical classes, including cyclic peptides, sesquiterpenoids, and phenols, were reported.
- Volatile antifungal compounds and strategies for inducing silent gene clusters were also explored.
Conclusions:
- Endophytic fungi are a rich source of diverse antifungal metabolites with potential to address antimicrobial resistance.
- Further research into endophytic fungi, including volatile compounds and gene cluster activation, can yield novel antifungal therapies.
- The findings support the continued exploration of natural products from endophytic fungi for drug discovery.
Related Concept Videos
Overview of Fungi
Fungal Group Zygomycota
Fungal Phylum Microsporidia
Fungal Phylum Ascomycota
Fungal Phylum Basidiomycota
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