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Updated: Jan 6, 2026

Experimental Viral Infection in Adult Mosquitoes by Oral Feeding and Microinjection
Published on: July 28, 2022
Comparative Analysis of Midgut Regeneration Capacity and Resistance to Oral Infection in Three Disease-Vector
Maria Janeh1, Dani Osman2, Zakaria Kambris3
1Biology Department, Faculty of Arts and Sciences, American University of Beirut, Beirut, Lebanon.
Abstract:
Mosquitoes acquire the pathogens they transmit through ingestion, and the insects' gut constitutes the first line of defense against invading pathogens. Indeed the gut epithelium acts as a physical barrier, activates local antimicrobial peptides production and triggers the systemic immune response. Consequently, gut epithelium is constantly confronted to stress and often suffers cellular damage. We have previously shown that regenerative cells are present in the guts of adult Aedes albopictus, and that chemical damage or bacterial infection leads to the proliferation of these regenerative cells in the midgut. In this study, we extended the analysis of gut cells response to stress to two other important disease vector mosquitoes: Culex pipiens and Anopheles gambiae. We fed mosquitoes on sucrose solutions or on sucrose supplemented with pathogenic bacteria or with damage-inducing chemicals. We also assayed the survival of mosquitoes following the ingestion of pathogenic bacteria. We found that in adult C. pipiens, dividing cells exist in the digestive tract and that these cells proliferate in the midgut after bacterial or chemical damage, similarly to what we previously observed in A. albopictus. In sharp contrast, we did not detect any mitotic cell in the midguts of A. gambiae mosquitoes, neither in normal situation nor after the induction of gut damage. In agreement with this observation, A. gambiae mosquitoes were more sensitive to oral bacterial infections compared to A. albopictus and C. pipiens. This work provides evidence that major differences in gut physiological responses exist between different mosquitoes. The presence of regenerative cells in the mosquito guts and their ability to multiply after gut damage affect the mosquito survival to oral infections, and is also likely to affect its vectorial capacity.
Insights
Mosquito gut regenerative cells aid survival against pathogens. Unlike Anopheles gambiae, Aedes albopictus and Culex pipiens show gut cell proliferation, enhancing their resistance to oral infections.
Area of Science:
- Vector biology
- Immunology
- Cell biology
Background:
- Mosquito gut epithelium is a primary defense against ingested pathogens.
- Gut stress can cause cellular damage, necessitating repair mechanisms.
Purpose of the Study:
- To investigate the presence and response of regenerative gut cells in Culex pipiens and Anopheles gambiae.
- To compare gut regenerative capacity and its impact on survival across different mosquito species.
Main Methods:
- Feeding mosquitoes sucrose, pathogenic bacteria, or chemical irritants.
- Assessing mosquito survival following oral bacterial challenge.
- Microscopic examination of midgut tissues to identify dividing cells.
Main Results:
- Culex pipiens, like Aedes albopictus, exhibited regenerative cell proliferation in the midgut after damage.
- Anopheles gambiae lacked detectable mitotic cells in the midgut, even after damage.
- Anopheles gambiae showed lower survival rates against oral bacterial infections compared to A. albopictus and C. pipiens.
Conclusions:
- Significant differences exist in mosquito gut physiology and regenerative capacity.
- The presence and proliferation of regenerative gut cells influence mosquito survival and vectorial capacity.
- Gut regenerative potential is a key factor in vector competence and disease transmission.

