Thermal behaviour of Anopheles stephensi in response to infection with malaria and fungal entomopathogens
Open Access
- 20 April 2009
- journal article
- Published by Springer Nature in Malaria Journal
- Vol. 8 (1) , 72
- https://doi.org/10.1186/1475-2875-8-72
Abstract
Temperature is a critical determinant of the development of malaria parasites in mosquitoes, and hence the geographic distribution of malaria risk, but little is known about the thermal preferences of Anopheles. A number of other insects modify their thermal behaviour in response to infection. These alterations can be beneficial for the insect or for the infectious agent. Given current interest in developing fungal biopesticides for control of mosquitoes, Anopheles stephensi were examined to test whether mosquitoes showed thermally-mediated behaviour in response to infection with fungal entomopathogens and the rodent malaria, Plasmodium yoelii.Keywords
This publication has 62 references indexed in Scilit:
- Use of a geographic information system to explore spatial variation in pathogen virulence and the implications for biological control of locusts and grasshoppersAgricultural and Forest Entomology, 2007
- The Genetic Basis of Thermal Reaction Norm Evolution in Lab and Natural Phage PopulationsPLoS Biology, 2006
- RESISTANCE OF EARLY MIDGUT STAGES OF NATURAL PLASMODIUM FALCIPARUM PARASITES TO HIGH TEMPERATURES IN EXPERIMENTALLY INFECTED ANOPHELES GAMBIAE (DIPTERA: CULICIDAE)Journal of Parasitology, 2004
- Thermal biology in insect-parasite interactionsPublished by Elsevier ,2003
- A Climate-based Distribution Model of Malaria Transmission in Sub-Saharan AfricaParasitology Today, 1999
- Effects of temperature on growth of Metarhizium flavoviride and virulence to the variegated grasshopper, Zonocerus variegatusMycological Research, 1997
- Effects of Temperature and Thermoregulation on Mycosis byBeauveria bassianain GrasshoppersBiological Control, 1996
- Rapid Laboratory Evolution of Adult Life-History Traits in Drosophila melanogaster in Response to TemperatureEvolution, 1995
- Malaria‐induced reduction of fecundity during the first gonotrophic cycle of Anopheles Stephensi mosquitoesMedical and Veterinary Entomology, 1995
- Fever and thermal tolerance in the toad Bufo marinusJournal of Thermal Biology, 1991