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Updated: Apr 23, 2026

Establishment of Viral Infection and Analysis of Host-Virus Interaction in Drosophila Melanogaster
Published on: March 14, 2019
Drosophila C virus systemic infection leads to intestinal obstruction
Stanislava Chtarbanova1, Olivier Lamiable1, Kwang-Zin Lee1
1CNRS UPR9022, Institut de Biologie Moléculaire et Cellulaire, Strasbourg, France.
Unlabelled:
Drosophila C virus (DCV) is a positive-sense RNA virus belonging to the Dicistroviridae family. This natural pathogen of the model organism Drosophila melanogaster is commonly used to investigate antiviral host defense in flies, which involves both RNA interference and inducible responses. Although lethality is used routinely as a readout for the efficiency of the antiviral immune response in these studies, virus-induced pathologies in flies still are poorly understood. Here, we characterize the pathogenesis associated with systemic DCV infection. Comparison of the transcriptome of flies infected with DCV or two other positive-sense RNA viruses, Flock House virus and Sindbis virus, reveals that DCV infection, unlike those of the other two viruses, represses the expression of a large number of genes. Several of these genes are expressed specifically in the midgut and also are repressed by starvation. We show that systemic DCV infection triggers a nutritional stress in Drosophila which results from intestinal obstruction with the accumulation of peritrophic matrix at the entry of the midgut and the accumulation of the food ingested in the crop, a blind muscular food storage organ. The related virus cricket paralysis virus (CrPV), which efficiently grows in Drosophila, does not trigger this pathology. We show that DCV, but not CrPV, infects the smooth muscles surrounding the crop, causing extensive cytopathology and strongly reducing the rate of contractions. We conclude that the pathogenesis associated with systemic DCV infection results from the tropism of the virus for an important organ within the foregut of dipteran insects, the crop.
Importance:
DCV is one of the few identified natural viral pathogens affecting the model organism Drosophila melanogaster. As such, it is an important virus for the deciphering of host-virus interactions in insects. We characterize here the pathogenesis associated with DCV infection in flies and show that it results from the tropism of the virus for an essential but poorly characterized organ in the digestive tract, the crop. Our results may have relevance for other members of the Dicistroviridae, some of which are pathogenic to beneficial or pest insect species.
Insights
Drosophila C virus (DCV) causes disease in fruit flies by blocking their crop, a food storage organ. This leads to nutritional stress and is linked to the virus
Area of Science:
- * Virology
- * Insect Pathology
- * Molecular Biology
Background:
- * Drosophila C virus (DCV) is a positive-sense RNA virus in the Dicistroviridae family and a natural pathogen of *Drosophila melanogaster*.
- * DCV is utilized to study antiviral host defense mechanisms in flies, including RNA interference and inducible responses.
- * While lethality is a common readout, the specific pathologies induced by DCV remain poorly understood.
Purpose of the Study:
- * To characterize the pathogenesis of systemic DCV infection in *Drosophila melanogaster*.
- * To elucidate the mechanisms underlying DCV-induced pathology and host-virus interactions.
- * To investigate the relevance of these findings to other Dicistroviridae members.
Main Methods:
- * Comparative transcriptome analysis of flies infected with DCV, Flock House virus, and Sindbis virus.
- * Examination of gene expression patterns, particularly in the midgut.
- * Histopathological analysis of the crop and smooth muscles in infected flies.
Main Results:
- * DCV infection significantly represses a large number of host genes, unlike Flock House virus and Sindbis virus.
- * DCV infection induces nutritional stress in flies, characterized by intestinal obstruction and food accumulation in the crop.
- * DCV specifically infects the smooth muscles of the crop, causing cytopathology and reduced contractions, a pathology not observed with cricket paralysis virus (CrPV).
Conclusions:
- * The pathogenesis of systemic DCV infection is attributed to the virus's tropism for the crop, an essential foregut organ in dipteran insects.
- * DCV-induced crop pathology leads to nutritional stress and contributes to the overall disease manifestation in fruit flies.
- * Understanding DCV's specific organ tropism provides insights into Dicistroviridae-induced diseases in insects.
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