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Updated: May 7, 2025

A Bacterial Oral Feeding Assay with Antibiotic-Treated Mosquitoes
Published on: September 12, 2020
Cell wall components of gut commensal bacteria stimulate peritrophic matrix formation in malaria vector mosquitoes
Xiumei Song1,2, Han Zhou1, Jingwen Wang1
1State Key Laboratory of Genetic Engineering, School of Life Sciences, Department of Infectious Diseases, Zhongshan Hospital, Fudan University, Shanghai, China.
Abstract:
The peritrophic matrix (PM) acts as a physical barrier that influences the vector competence of mosquitoes. We have previously shown that gut microbiota promotes PM formation in Anopheles stephensi, although the underlying mechanisms remain unclear. In this study, we identify that the cell wall components of gut commensal bacteria contribute to PM formation. Oral administration of primary cell wall components from both gram-positive and gram-negative bacteria, such as diaminopimelic acid-peptidoglycan (DAP-PGN), lysine-peptidoglycan (Lys-PGN), and lipopolysaccharides (LPS), to mosquitoes, after depleting their gut microbiota with antibiotics, restores the down-regulated expression of the peritrophin1 (Per1) gene, which encodes a structural protein of the PM. Moreover, this administration rescues PM formation upon blood ingestion. PGN and LPS are well-known ligands of innate immune signaling pathways in animals. In mosquitoes, the Toll and IMD (immune deficiency) pathways are the 2 major innate immune signaling pathways. We next knocked down the expression of 2 receptors, Pgrp-s1 and Pgrp-lc, as well as 2 transcription factors, Rel1 and Rel2, which are involved in the Toll and IMD pathways, respectively. Double knockdown of Pgrp-s1 and Pgrp-lc, or Rel1 and Rel2, compromised Per1 expression. Additionally, through dual-luciferase assays and supershift electrophoretic mobility shift assays (EMSAs), we identified a 15-bp binding motif (ATAGACACGAGCACC) for Rel1 and Rel2 in the Per1 promoter region. To further explore the role of individual Toll and IMD pathways in the regulation of Per1 expression, we specifically inhibited the activity of each pathway. While inhibition of the Toll pathway by knocking down Pgrp-s1 or Rel1 did not affect Per1 expression, knockdown of Pgrp-lc or Rel2 in the IMD pathway significantly down-regulated Per1 expression. These findings suggest that the IMD pathway plays a major role in regulating Per1 expression in An. stephensi. In summary, our study uncovers a novel role for bacterial cell wall components in regulating PM formation through activation of mosquito immune signaling pathways.
Insights
Bacterial cell wall components, like peptidoglycans and lipopolysaccharides, promote mosquito peritrophic matrix formation by activating the IMD immune pathway. This finding reveals a novel link between gut bacteria and mosquito vector competence.
Area of Science:
- Mosquito biology
- Vector competence
- Insect immunology
Background:
- The peritrophic matrix (PM) is crucial for mosquito vector competence.
- Gut microbiota influences PM formation in Anopheles stephensi.
- Mechanisms linking gut microbiota to PM formation are not fully understood.
Purpose of the Study:
- To identify bacterial components that regulate PM formation.
- To elucidate the role of mosquito innate immune pathways in PM regulation.
- To investigate the link between bacterial cell wall components and PM formation.
Main Methods:
- Oral administration of bacterial cell wall components (PGN, LPS) to antibiotic-treated mosquitoes.
- Gene expression analysis of peritrophin1 (Per1).
- Knockdown of immune pathway components (Pgrp-s1, Pgrp-lc, Rel1, Rel2) and subsequent analysis of Per1 expression.
- Luciferase assays and electrophoretic mobility shift assays (EMSAs) to identify transcription factor binding sites.
Main Results:
- Bacterial cell wall components (diaminopimelic acid-peptidoglycan, lysine-peptidoglycan, lipopolysaccharides) restored Per1 expression and PM formation.
- Knockdown of Toll and IMD pathway components (Pgrp-s1, Pgrp-lc, Rel1, Rel2) affected Per1 expression.
- The IMD pathway, specifically via Pgrp-lc and Rel2, was identified as the primary regulator of Per1 expression.
- A specific binding motif for Rel1 and Rel2 was found in the Per1 promoter region.
Conclusions:
- Bacterial cell wall components are key regulators of mosquito PM formation.
- The IMD immune pathway plays a significant role in mediating this regulation.
- This study uncovers a novel mechanism by which gut microbiota influences mosquito physiology and vector competence.
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