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Isolation and Selection of Entomopathogenic Fungi from Soil Samples and Evaluation of Fungal Virulence against Insect Pests
Published on: September 28, 2021
Antimicrobial Volatiles of the Insect Pathogen Metarhizium brunneum
Esam Hamid Hummadi1,2, Yarkin Cetin1, Merve Demirbek1
1Faculty of Science and Engineering, Swansea University, Singleton Park, Swansea SA2 8PP, Wales, UK.
Abstract:
Fungal volatile organic compounds (VOCs) represent promising candidates for biopesticide fumigants to control crop pests and pathogens. Herein, VOCs produced using three strains of the entomopathogenic fungus Metarhizium brunneum were identified via GC-MS and screened for antimicrobial activity. The VOC profiles varied with fungal strain, development state (mycelium, spores) and culture conditions. Selected VOCs were screened against a range of rhizosphere and non-rhizosphere microbes, including three Gram-negative bacteria (Escherichia coli, Pantoea agglomerans, Pseudomonas aeruginosa), five Gram-positive bacteria (Micrococcus luteus, Staphylococcus aureus, Bacillus subtilis, B. megaterium, B. thuringiensis), two yeasts (Candida albicans, Candida glabrata) and three plant pathogenic fungi (Pythium ultimum, Botrytis cinerea, Fusarium graminearum). Microbes differed in their sensitivity to the test compounds, with 1-octen-3-ol and isovaleric acid showing broad-spectrum antimicrobial activity. Yeasts and bacteria were inhibited by the same VOCs. Cryo-SEM showed that both yeasts and bacteria underwent some form of "autolysis", where all components of the cell, including the cell wall, disintegrated with little evidence of their presence in the clear, inhibition zone. The oomycete (P. ultimum) and ascomycete fungi (F. graminearum, B. cinerea) were sensitive to a wider range of VOCs than the bacteria, suggesting that eukaryotic microbes are the main competitors to M. brunneum in the rhizosphere. The ability to alter the VOC profile in response to nutritional cues may assist M. brunneum to survive among the roots of a wide range of plant species. Our VOC studies provided new insights as to how M. brunneum may protect plants from pathogenic microbes and correspondingly promote healthy growth.
Insights
Fungal volatile organic compounds (VOCs) from Metarhizium brunneum show potential as biopesticides. Certain VOCs, like 1-octen-3-ol, exhibit broad-spectrum antimicrobial activity, effectively inhibiting various microbes.
Area of Science:
- Agricultural Science
- Microbiology
- Biotechnology
Background:
- Fungal volatile organic compounds (VOCs) are explored as eco-friendly biopesticides for crop protection.
- Entomopathogenic fungi, such as Metarhizium brunneum, produce VOCs with potential antimicrobial properties.
Purpose of the Study:
- To identify and characterize VOCs produced by Metarhizium brunneum strains.
- To screen the antimicrobial activity of these VOCs against a diverse range of microbial pathogens.
- To understand the mechanism of microbial inhibition by fungal VOCs.
Main Methods:
- Gas chromatography-mass spectrometry (GC-MS) for VOC identification.
- Antimicrobial screening against Gram-negative bacteria, Gram-positive bacteria, yeasts, and plant pathogenic fungi.
- Cryo-scanning electron microscopy (Cryo-SEM) to observe cellular effects.
Main Results:
- VOC profiles varied significantly based on fungal strain, developmental stage, and culture conditions.
- 1-octen-3-ol and isovaleric acid demonstrated broad-spectrum antimicrobial activity against bacteria and yeasts.
- Eukaryotic microbes (oomycetes and fungi) were more sensitive to VOCs than bacteria, indicating competitive interactions in the rhizosphere.
Conclusions:
- Metarhizium brunneum VOCs, particularly 1-octen-3-ol and isovaleric acid, show promise as natural fumigants for biopesticide applications.
- The ability of M. brunneum to modulate VOC production aids its survival and potential plant protection in the rhizosphere.
- These findings offer insights into microbial competition and plant health promotion mediated by fungal VOCs.
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