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Propagation of the Microsporidian Parasite Edhazardia aedis in Aedes aegypti Mosquitoes
Published on: August 13, 2020
Metarhizium brunneum Blastospore Pathogenesis in Aedes aegypti Larvae: Attack on Several Fronts Accelerates Mortality
Abeer M Alkhaibari1, Aline T Carolino2, Sare I Yavasoglu3
1Department of Biosciences, College of Science, Swansea University, Singleton Park, Swansea, United Kingdom.
Abstract:
Aedes aegypti is the vector of a wide range of diseases (e.g. yellow fever, dengue, Chikungunya and Zika) which impact on over half the world's population. Entomopathogenic fungi such as Metarhizium anisopliae and Beauveria bassiana have been found to be highly efficacious in killing mosquito larvae but only now are the underlying mechanisms for pathogenesis being elucidated. Recently it was shown that conidia of M. anisopliae caused stress induced mortality in Ae. aegypti larvae, a different mode of pathogenicity to that normally seen in terrestrial hosts. Blastospores constitute a different form of inoculum produced by this fungus when cultured in liquid media and although blastospores are generally considered to be more virulent than conidia no evidence has been presented to explain why. In our study, using a range of biochemical, molecular and microscopy methods, the infection process of Metarhizium brunneum (formerly M. anisopliae) ARSEF 4556 blastospores was investigated. It appears that the blastospores, unlike conidia, readily adhere to and penetrate mosquito larval cuticle. The blastospores are readily ingested by the larvae but unlike the conidia are able infect the insect through the gut and rapidly invade the haemocoel. The fact that pathogenicity related genes were upregulated in blastospores exposed to larvae prior to invasion, suggests the fungus was detecting host derived cues. Similarly, immune and defence genes were upregulated in the host prior to infection suggesting mosquitoes were also able to detect pathogen-derived cues. The hydrophilic blastospores produce copious mucilage, which probably facilitates adhesion to the host but do not appear to depend on production of Pr1, a cuticle degrading subtilisin protease, for penetration since protease inhibitors did not significantly alter blastospore virulence. The fact the blastospores have multiple routes of entry (cuticle and gut) may explain why this form of the inoculum killed Ae. aegypti larvae in a relatively short time (12-24hrs), significantly quicker than when larvae were exposed to conidia. This study shows that selecting the appropriate form of inoculum is important for efficacious control of disease vectors such as Ae. aegypti.
Insights
Blastospores of Metarhizium brunneum rapidly infect Aedes aegypti larvae through cuticle and gut, offering a faster control method than conidia. Understanding these infection mechanisms is key for effective disease vector control.
Area of Science:
- Medical entomology
- Fungal pathogenesis
- Vector-borne disease control
Background:
- Aedes aegypti mosquitoes transmit devastating diseases like dengue and Zika.
- Entomopathogenic fungi show promise for mosquito control, but infection mechanisms are not fully understood.
- Blastospores, a fungal form, are more virulent than conidia, but the reasons are unclear.
Purpose of the Study:
- To investigate the infection process of Metarhizium brunneum blastospores in Aedes aegypti larvae.
- To elucidate the mechanisms behind blastospore-induced pathogenicity.
- To compare blastospore and conidia infection routes and speed.
Main Methods:
- Biochemical assays
- Molecular analyses
- Microscopy techniques
- Virulence assays with protease inhibitors
Main Results:
- Metarhizium brunneum blastospores adhere to and penetrate Aedes aegypti larval cuticle.
- Blastospores are ingested and infect larvae via the gut, rapidly invading the hemocoel.
- Pathogenicity genes in blastospores and immune genes in larvae were upregulated upon exposure, indicating cue detection.
- Protease inhibitors did not significantly affect blastospore virulence, suggesting limited reliance on Pr1 protease for penetration.
Conclusions:
- Blastospores possess multiple infection routes (cuticle and gut) leading to rapid Aedes aegypti larval mortality (12-24 hours).
- The distinct infection strategy of blastospores explains their higher virulence compared to conidia.
- Selecting appropriate fungal inoculum forms, like blastospores, is crucial for effective control of disease vectors.
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