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Published on: November 24, 2010
Sublethal effects of iridovirus disease in a mosquito
Carlos F Marina1, Juan I Arredondo-Jiménez2, Alfredo Castillo1
1ECOSUR, Carr. Ant. Aeropuerto Km 2.5, Apdo Postal 36, Tapachula 30700, Chiapas, Mexico e-mail: trevw@tap-ecosur.edu.mx, Tel.: +52-962-81103/81104, Fax: +52-962-81015, , , , , , MX.
Abstract:
Recognition of the importance of debilitating effects of insect virus diseases is currently growing. Commonly observed effects of sublethal infection at the individual level include extended development times, reduced pupal and adult weights, and lowered fecundity. However, for the most part, sublethal infections are assumed to be present in survivors of an inoculum challenge, rather than demonstrated to be present by microscopy or molecular techniques. Invertebrate iridescent viruses are dsDNA viruses capable of causing disease with symptoms obvious to the naked eye, a "patent" infection, that is lethal. Furthermore, inapparent "covert" infections may occur that are non-lethal and which can only be detected using bioassay or molecular techniques. In this study, replication of Invertebrate iridescent virus 6 in Aedes aegypti larvae was demonstrated in the absence of patent disease. A sensitive insect bioassay (using Galleria mellonella) allowed the detection of covert infections, which were more common than patent infections. A concentration-response relationship was detected for the incidence of patent infections. Covert infections were up to 2 orders of magnitude commoner than patent infections, but the prevalence of covert infections did not appear to be related to virus inoculum concentration. Exposure of larvae to virus inoculum resulted in extended juvenile development times. A reduction in the mean and an increase in the variability of fecundity and adult progeny production was observed in females exposed to an inoculum challenge, although formal analysis was not possible. Males appeared capable of passing virus to uninfected females during the mating process. Covertly infected females were smaller and had shorter lifespans than control or virus-challenged females. A conservative estimate for the reduction in the net reproductive rate (R 0) of such insects was calculated at slightly more than 20% relative to controls.
Insights
Sublethal invertebrate iridescent virus 6 infections in Aedes aegypti larvae cause covert infections, which are more common than lethal patent infections. These covert infections significantly impact insect development, reproduction, and lifespan, reducing the net reproductive rate by over 20%.
Area of Science:
- Virology
- Entomology
- Insect Pathology
Background:
- Sublethal insect virus infections can have debilitating effects, including reduced development and fecundity.
- Covert (inapparent) infections, detectable only by bioassay or molecular methods, are often assumed but not demonstrated in survivors.
- Invertebrate iridescent viruses cause patent (lethal) or covert (non-lethal) infections.
Purpose of the Study:
- To demonstrate the replication of Invertebrate iridescent virus 6 (II V-6) in Aedes aegypti larvae without patent disease.
- To quantify the prevalence of covert II V-6 infections using a sensitive insect bioassay.
- To assess the impact of sublethal II V-6 infection on Aedes aegypti development, reproduction, and lifespan.
Main Methods:
- Replication of II V-6 in Aedes aegypti larvae was studied.
- A sensitive insect bioassay using Galleria mellonella was employed to detect covert infections.
- Effects on juvenile development time, fecundity, adult progeny production, lifespan, and net reproductive rate were analyzed.
Main Results:
- Covert II V-6 infections were demonstrated in Aedes aegypti larvae in the absence of patent disease.
- Covert infections were up to 100 times more common than patent infections.
- Sublethal II V-6 exposure led to extended juvenile development, reduced fecundity, shorter female lifespans, and a >20% reduction in net reproductive rate.
Conclusions:
- Covert invertebrate iridescent virus infections are common in Aedes aegypti and have significant detrimental effects on host fitness.
- The detection of covert infections is crucial for understanding the true impact of insect viruses.
- Sublethal viral infections pose a substantial threat to insect populations and require further investigation.

