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Development of Metarhizium anisopliae as a Mycoinsecticide: From Isolation to Field Performance
Published on: July 30, 2017
A collagenous protective coat enables Metarhizium anisopliae to evade insect immune responses
Chengshu Wang1, Raymond J St Leger
1Department of Entomology, University of Maryland, College Park, MD 20742, USA.
Abstract:
The ubiquitous fungal pathogen Metarhizium anisopliae kills a wide range of insects. Host hemocytes can recognize and ingest its conidia, but this capacity is lost on production of hyphal bodies. We show that the unusual ability of hyphal bodies to avoid detection depends on a gene (Mcl1) that is expressed within 20 min of the pathogen contacting hemolymph. A mutant disrupted in Mcl1 is rapidly attacked by hemocytes and shows a corresponding reduction of virulence to Manduca sexta. Mcl1 encodes a three domain protein comprising a hydrophilic, negatively charged N-terminal region with 14 cysteine residues, a central region comprising tandem repeats (GXY) characteristic of collagenous domains, and a C-terminal region that includes a glycosylphosphatidylinositol-dependent cell wall attachment site. Immunofluorescence assay showed that hyphal bodies are covered by the N-terminal domains of MCL1. The collagen domain became antibody accessible after treatment with DTT, suggesting that the N termini are linked by interchain disulfide bonds and are presented on the cell surface by extended collagenous fibers. Studies with staining reagents and hemocyte monolayers showed that MCL1 functions as an antiadhesive protective coat because it masks antigenic structural components of the cell wall such as beta-glucans, and because its hydrophilic negatively charged nature makes it unattractive to hemocytes. A survey of 54 fungal genomes revealed that seven other species have proteins with collagenous domains suggesting that MCL1 is a member of a patchily distributed gene family.
Insights
The Metarhizium anisopliae fungus evades insect immune cells using the Mcl1 protein. This gene helps hyphal bodies avoid detection, crucial for fungal virulence.
Area of Science:
- Mycology
- Insect Pathology
- Molecular Biology
Background:
- Metarhizium anisopliae is a widespread fungal pathogen of insects.
- Insect hemocytes normally recognize and engulf fungal conidia.
- Fungal hyphal bodies evade hemocyte detection, a key factor in virulence.
Purpose of the Study:
- Investigate the mechanism by which Metarhizium anisopliae hyphal bodies evade host hemocytes.
- Identify genes responsible for the anti-hemocyte activity of hyphal bodies.
Main Methods:
- Gene disruption of Mcl1 in Metarhizium anisopliae.
- Virulence assays using Manduca sexta.
- Immunofluorescence microscopy to localize MCL1 protein.
- Hemocyte interaction assays using staining reagents and monolayers.
Main Results:
- Mcl1 gene expression is rapidly induced upon contact with hemolymph.
- Mcl1 disruption leads to hemocyte attack and reduced virulence.
- MCL1 protein forms a protective coat on hyphal bodies, masking beta-glucans.
- The protein's hydrophilic, negatively charged N-terminus repels hemocytes.
Conclusions:
- MCL1 is essential for Metarhizium anisopliae hyphal bodies to evade insect immune responses.
- MCL1 functions as an anti-adhesive coat, preventing hemocyte recognition and phagocytosis.
- The Mcl1 gene family is present in other fungal species, suggesting conserved immune evasion strategies.
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