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Entomopathogens of phlebotomine sand flies: laboratory experiments and natural infections
1Department of Health and Human Services, National Institute of Health, Bethesda, Maryland 20892.
Abstract:
The susceptibility of different geographical strains of Phlebotomus papatasi to a cytoplasmic polyhedrosis virus (CPV) was determined experimentally by feeding polyhedra to larvae. Of the Indian P. papatasi, 15.6% became infected, whereas Egyptian P. papatasi were mostly refractory. Infection rates were not augmented in colony flies from the Jordan Valley, 23.8% of which were naturally infected with CPV. The infectivity of Serratia marcescens and Beauvaria bassiana to P. papatasi were determined experimentally. A suspension of B. bassiana spores or S. marcescens bacteria, ingested by P. papatasi in sucrose solution, did not significantly augment mortality rates or reduce the number of eggs oviposited. However, B. bassiana spores smeared on a filter paper constituting 1 or 5% of the surface area available to flies induced 100% mortality of P. papatasi on days 5 and 4, respectively. Mortality in Lutzomyia longipalpis reached 100% on day 4. There were markedly lower mortality rates in the control groups and more eggs were produced by these females (P. papatasi: control = 48.5; experimental = 0.9-1.6 eggs/female; L. longipalpis; control = 17.1; experimental = 0 eggs/female). From wild-caught Colombian Lutzomyia spp., a nonfluorescent pseudomonas, an Entomophthorales fungus, and a Trypanosomatid protozoon (probably Leptomonas) were isolated in culture media. Gregarines (Ascogregarina saraviae) and nematodes (Tylenchida and Spirurida) were also recorded. In laboratory-reared flies, an ectoparasitic fungus was associated with high mortality rates of first instar Lutzomyia spp. larvae. Opportunistic ectoparasitic aggregates of bacteria, yeast, and fungi on the tarsi of colonized L. longipalpis and P. papatasi hindered their mobility and were associated with reduced colony vigor. Aspergillus flavus, B. bassiana, and S. marcescens were isolated from laboratory-bred P. papatasi adults.
Insights
Geographical strains of Phlebotomus papatasi showed varied susceptibility to cytoplasmic polyhedrosis virus (CPV). Beauveria bassiana effectively caused high mortality in P. papatasi and Lutzomyia longipalpis, impacting egg production.
Area of Science:
- * Medical entomology
- * Insect pathology
- * Vector-borne disease research
Background:
- * Phlebotomine sandflies, vectors of leishmaniasis, exhibit geographical variations in susceptibility to pathogens.
- * Investigating microbial agents for vector control is crucial for disease management.
Purpose of the Study:
- * To assess the susceptibility of different geographical strains of Phlebotomus papatasi to a cytoplasmic polyhedrosis virus (CPV).
- * To evaluate the infectivity and pathogenicity of Beauveria bassiana and Serratia marcescens against P. papatasi and Lutzomyia longipalpis.
- * To identify naturally occurring pathogens in wild-caught Colombian Lutzomyia spp.
Main Methods:
- * Experimental infection of Phlebotomus papatasi larvae with CPV polyhedra.
- * Oral administration of Beauveria bassiana spores and Serratia marcescens bacteria to adult sandflies.
- * Topical application of B. bassiana spores on filter paper for mortality assessment.
- * Isolation and identification of microorganisms from wild-caught Lutzomyia spp. and laboratory-reared sandflies.
Main Results:
- * Indian P. papatasi showed 15.6% infection with CPV; Egyptian strains were largely refractory.
- * Ingestion of B. bassiana or S. marcescens did not significantly increase mortality or reduce egg counts.
- * Topical application of B. bassiana induced 100% mortality in P. papatasi and L. longipalpis within 4-5 days, drastically reducing egg production.
- * Various microbes, including fungi and protozoa, were isolated from wild Colombian Lutzomyia spp. and laboratory colonies.
Conclusions:
- * Geographical variation exists in P. papatasi susceptibility to CPV.
- * Beauveria bassiana shows significant potential as a microbial control agent against sandflies when applied topically.
- * Microbial infections and opportunistic pathogens can negatively impact sandfly colony vigor and reproductive capacity.