In this study, the effects of rearing temperature on survival and development rate of pre-imaginal stages and on wing length of adult Culex pipiens (Diptera: Culicidae) were evaluated. Larvae I were reared until adult emergence at seven constant temperatures between 7 and 33°C. The highest survival was found at 25°C. The development rate of the immature stages decreased with increasing temperature until 30°C. The threshold temperature and thermal constant were, respectively, 5.2°C and 186.5 degree-days for males, and 5.5°C and 199.5 degree-days for females. According to a non-linear model, the lower and upper thermal thresholds were, respectively, 8.4°C and 34.4°C for males, and 9.8°C and 34.2°C for females. Wing length decreased with incre...
In temperate regions, the seasonal dynamics of Aedes aegypti (L) (Diptera: Culicidae) is mainly infl...
International audienceBACKGROUND: The effect of temperature on insect biology is well understood und...
Many environmental factors, biotic and abiotic interact to influence organismal development. Given t...
The aim of this research was to evaluate the effect of temperature on the development time and survi...
We investigated how ambient temperature under fluctuating conditions affects the larval–pupal immatu...
We investigated how ambient temperature under fluctuating conditions affects the larval–pupal immatu...
Due to the ability of mosquito species to survive in wide variety of temperatures, an experiment was...
The biological processes on mosquito could be variable in response to local climatic characteristics...
The distribution of Aedes aegypti (L.) (Diptera: Culicidae) is expanding towards colder regions, whi...
Abstract Background This study aims at determining the effects of rearing water temperature on immat...
Most studies of the effects of low temperature on the development of immature stages of Aedes aegypt...
Host-seeking females of Aedes albifasciatus (Macquart) were collected from April to September 1997, ...
BackgroundThe effect of temperature on insect biology is well understood under constant temperature ...
Immature development times, survival rates and adult size (wing-lengths) of the mosquito Aedes aegyp...
Rearing experiments of Cx. tritaeniorhynchus Giles immatures were conducted under different temperat...
In temperate regions, the seasonal dynamics of Aedes aegypti (L) (Diptera: Culicidae) is mainly infl...
International audienceBACKGROUND: The effect of temperature on insect biology is well understood und...
Many environmental factors, biotic and abiotic interact to influence organismal development. Given t...
The aim of this research was to evaluate the effect of temperature on the development time and survi...
We investigated how ambient temperature under fluctuating conditions affects the larval–pupal immatu...
We investigated how ambient temperature under fluctuating conditions affects the larval–pupal immatu...
Due to the ability of mosquito species to survive in wide variety of temperatures, an experiment was...
The biological processes on mosquito could be variable in response to local climatic characteristics...
The distribution of Aedes aegypti (L.) (Diptera: Culicidae) is expanding towards colder regions, whi...
Abstract Background This study aims at determining the effects of rearing water temperature on immat...
Most studies of the effects of low temperature on the development of immature stages of Aedes aegypt...
Host-seeking females of Aedes albifasciatus (Macquart) were collected from April to September 1997, ...
BackgroundThe effect of temperature on insect biology is well understood under constant temperature ...
Immature development times, survival rates and adult size (wing-lengths) of the mosquito Aedes aegyp...
Rearing experiments of Cx. tritaeniorhynchus Giles immatures were conducted under different temperat...
In temperate regions, the seasonal dynamics of Aedes aegypti (L) (Diptera: Culicidae) is mainly infl...
International audienceBACKGROUND: The effect of temperature on insect biology is well understood und...
Many environmental factors, biotic and abiotic interact to influence organismal development. Given t...