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.

Fungal Biology
|March 1, 2025
PubMed

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.

Related Concept Videos

Bacterial Phylum Actinobacteria01:30

Bacterial Phylum Actinobacteria

Coryneform bacteria are gram-positive, aerobic, nonmotile rods that exhibit irregular, club-shaped, or V-shaped arrangements. Their V-shape results from snapping division, where the inner cell wall layer forms the cross-wall, while the outer layer remains intact until it ruptures on one side, causing the daughter cells to bend away.The primary genera are Corynebacterium and Arthrobacter. Corynebacterium includes diverse species, ranging from saprophytes to pathogens like Corynebacterium...
Overview of Fungi01:29

Overview of Fungi

Fungi are a diverse group of eukaryotes more closely related to animals than other eukaryotes. Fungal cell walls comprise chitin, a polysaccharide that provides structural strength, and glucans, which contribute to flexibility and integrity. Other polysaccharides, such as mannans and galactosans, may supplement or replace chitin in some fungi. These adaptations, along with their preference for acidic environments and tolerance for high osmotic pressure, enable fungi to thrive in various...
Fungal Group Zygomycota01:29

Fungal Group Zygomycota

Zygomycota, previously classified as a distinct fungal group, are primarily terrestrial, saprophytic molds that play a crucial role as decomposers. Recent phylogenetic studies have revealed that these fungi are now divided into two major clades — Mucoromycota, which includes many symbiotic species, and Zoopagomycota, which primarily consists of parasitic and pathogenic fungi. These groups exhibit distinct ecological roles and reproductive strategies while sharing key structural and...
Fungal Phylum Microsporidia01:28

Fungal Phylum Microsporidia

Microsporidia are a group of obligate intracellular fungi that were initially classified as protists but were later reclassified based on phylogenetic, molecular, and structural evidence linking them to the Chytridiomycota. These unicellular, non-motile organisms are highly specialized parasites that infect a wide range of animal hosts, including humans. They have evolved extensive genomic and metabolic reductions, making them highly dependent on their hosts for survival.Morphology and Genomic...
Fungal Phylum Ascomycota01:28

Fungal Phylum Ascomycota

Phylum Ascomycota, a major division within the subkingdom Dikarya, comprises a diverse range of fungal species, including both unicellular yeasts and filamentous molds such as Aspergillus and Penicillium. These fungi thrive in a variety of habitats, from aquatic ecosystems to terrestrial environments, playing crucial ecological and economic roles.Morphology and ReproductionThe defining characteristic of Ascomycetes, commonly referred to as sac fungi, is the ascus—a sac-like structure that...
Fungal Phylum Basidiomycota01:26

Fungal Phylum Basidiomycota

Basidiomycota is a diverse phylum of fungi that includes ecologically significant decomposers such as white rot fungi, symbionts like mycorrhizal fungi, plant pathogens such as rusts and smuts, and edible species like Agaricus bisporus (the common button mushroom). These fungi play crucial roles in nutrient cycling, symbiotic relationships, and even human health. Their defining feature is the basidium, a microscopic club-shaped structure responsible for producing basidiospores.Fruiting Bodies...