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Updated: May 11, 2026

Standard Membrane Feeding Assay for the Detection of Plasmodium falciparum Infection in Anopheles Mosquito Vectors
Published on: May 12, 2022
Malaria mosquitoes attracted by fatal fungus
Justin George1, Nina E Jenkins, Simon Blanford
1Department of Entomology, Pennsylvania State University, University Park, Pennsylvania, USA.
Abstract:
Insect-killing fungi such as Beauveria bassiana are being evaluated as possible active ingredients for use in novel biopesticides against mosquito vectors that transmit malaria. Fungal pathogens infect through contact and so applications of spores to surfaces such as walls, nets, or other resting sites provide possible routes to infect mosquitoes in and around domestic dwellings. However, some insects can detect and actively avoid fungal spores to reduce infection risk. If true for mosquitoes, such behavior could render the biopesticide approach ineffective. Here we find that the spores of B. bassiana are highly attractive to females of Anopheles stephensi, a major anopheline mosquito vector of human malaria in Asia. We further find that An. stephensi females are preferentially attracted to dead and dying caterpillars infected with B. bassiana, landing on them and subsequently becoming infected with the fungus. Females are also preferentially attracted to cloth sprayed with oil-formulated B. bassiana spores, with 95% of the attracted females becoming infected after a one-minute visit on the cloth. This is the first report of an insect being attracted to a lethal fungal pathogen. The exact mechanisms involved in this behavior remain unclear. Nonetheless, our results indicate that biopesticidal formulations comprising B. bassiana spores will be conducive to attraction and on-source visitation by malaria vectors.
Insights
Mosquitoes are attracted to Beauveria bassiana fungal spores, a potential biopesticide. This attraction to the insect-killing fungus, Beauveria bassiana, enhances biopesticide effectiveness against malaria vectors like Anopheles stephensi.
Area of Science:
- Medical entomology
- Mycology
- Biopesticide development
Background:
- Insect-killing fungi, such as Beauveria bassiana, are explored as biopesticides against malaria vectors.
- Mosquitoes may avoid fungal spores, potentially limiting biopesticide efficacy.
- Anopheles stephensi is a primary mosquito vector of malaria in Asia.
Purpose of the Study:
- To investigate Anopheles stephensi's response to Beauveria bassiana spores.
- To determine if mosquitoes are attracted to or avoid fungal pathogens.
- To assess the potential of B. bassiana as an attractive biopesticide for malaria vector control.
Main Methods:
- Observing Anopheles stephensi female attraction to B. bassiana spores on surfaces.
- Presenting infected caterpillars and spore-treated cloth to mosquitoes.
- Quantifying mosquito visitation and infection rates upon exposure.
Main Results:
- Anopheles stephensi females were significantly attracted to B. bassiana spores.
- Mosquitoes preferentially landed on and became infected by B. bassiana-infected caterpillars.
- 95% of visiting Anopheles stephensi females became infected after a minute on spore-treated cloth.
Conclusions:
- Anopheles stephensi exhibits attraction to the lethal fungus Beauveria bassiana.
- This attraction suggests biopesticide formulations with B. bassiana spores can effectively attract and infect malaria vectors.
- The findings support the use of B. bassiana in novel biopesticides for malaria vector control.
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