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Published on: July 30, 2017
Metarhizium acridum exhibits a different conidial hydrophobicity than other insect-pathogenic fungi
Humberto R Medina1, Drauzio E N Rangel2
1Laboratory of Molecular Biology - LGO, Tecnológico Nacional de México, Celaya, Gto., 38010, Mexico.
Abstract:
Metarhizium acridum is an insect-pathogenic fungus with a narrow host range that is used to control grasshoppers, locusts, and crickets. Its conidia show impressive resilience against UV-B radiation and heat compared to other insect pathogens. Despite this high tolerance, M. acridum is notably susceptible to various chemical stressors. The conidial surface is a monolayer formed by hydrophobins and the first barrier against stressors. However, little is known about the conidial surface properties of this fungus. This work aimed to evaluate the hydrophobic properties of the conidial surface in M. acridum ARSEF 324 and to compare them with those of other entomopathogen fungi. For this, drop profiles of water and diiodomethane on fungal cultures were analyzed, and the conidial hydrophobicity was estimated from a contact angle following the sessile drop method. The analysis of droplet profiles revealed distinct hydrophobic properties among the conidia of various insect-pathogenic fungi. The conidia of Beauveria bassiana, M. acridum, and Metarhizium robertsii exhibited high hydrophobicity, as indicated by water contact angles greater than 140°. In contrast, the conidia of Tolypocladium inflatum showed slightly lower hydrophobicity with a water contact angle below 130°. The behavior of diiodomethane further highlighted the variation in surface interactions, particularly for M. acridum, where the drop flattened instantly, indicating its low affinity for nonpolar compounds, which correlated with the extremely low tolerance of ARSEF 324 to chemicals. Overall, the study provides a deeper understanding of fungal surface properties, which could have implications for its tolerance to chemical stressors.
Insights
Metarhizium acridum conidia are highly hydrophobic, unlike their susceptibility to chemical stressors. This study characterized fungal surface properties, revealing insights into their environmental resilience and chemical sensitivity.
Area of Science:
- Mycology
- Biochemistry
- Pest Management
Background:
- Metarhizium acridum is an insect-pathogen used for pest control, known for UV-B and heat resilience.
- Despite environmental tolerance, M. acridum exhibits significant susceptibility to chemical stressors.
- The conidial surface, composed of hydrophobins, acts as the primary defense against environmental challenges.
Purpose of the Study:
- To evaluate the hydrophobic properties of Metarhizium acridum ARSEF 324 conidia.
- To compare the hydrophobicity of M. acridum conidia with other entomopathogenic fungi.
- To investigate the relationship between conidial surface properties and chemical stress tolerance.
Main Methods:
- Sessile drop method to estimate conidial hydrophobicity via contact angle measurements.
- Analysis of droplet profiles of water and diiodomethane on fungal cultures.
- Comparative hydrophobicity assessment across different entomopathogenic fungal species.
Main Results:
- Conidia of Beauveria bassiana, M. acridum, and Metarhizium robertsii displayed high hydrophobicity (water contact angle > 140°).
- Tolypocladium inflatum conidia showed lower hydrophobicity (water contact angle < 130°).
- M. acridum conidia exhibited rapid diiodomethane spreading, indicating low affinity for nonpolar compounds, correlating with poor chemical tolerance.
Conclusions:
- Fungal conidial surface hydrophobicity varies significantly among entomopathogenic species.
- The high hydrophobicity of M. acridum conidia does not confer broad stress tolerance, particularly against chemicals.
- Understanding conidial surface properties is crucial for predicting and potentially improving the efficacy of fungal biocontrol agents.
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