Considerable research effort has been directed at understanding the genetic and molecular basis of mosquito innate immune mechanisms. Whether environmental factors interact with these mechanisms to shape overall resistance remains largely unexplored. Here we examine how changes in mean ambient temperature, diurnal temperature fluctuation, and time of day of infection affected the immunity and resistance of Anopheles stephensi to infection with Escherichia coli. We used quantitative PCR to estimate the gene expression of three immune genes in response to challenge with heat-killed Escherichia coli. We also infected mosquitoes with live E. coli and ran bacterial survival assays to quantify host resistance. Both mosquito immune parameters ...
The principal vector of dengue, Zika and chikungunya viruses is the mosquito Aedes aegypti, with its...
Several studies suggest the potential for climate change to increase malaria incidence in cooler, ma...
Understanding how mosquito vectors and malaria parasites interact is of fundamental interest, and it...
Considerable research effort has been directed at understanding the genetic and molecular basis of m...
Malaria transmission is known to be strongly impacted by temperature. Current understanding of how t...
The principal vector of dengue, Zika and chikungunya viruses is the mosquito Aedes aegypti, with its...
Abstract Background Malaria remains one of the most d...
Many aspects of mosquito biology are highly sensitive to variation in temperature, which has led to ...
BACKGROUND: Environmental factors, especially ambient temperature and relative humidity affect both ...
Mosquito-borne diseases cause a major burden of disease worldwide. The vital rates of these ectother...
Mosquito-borne diseases cause a major burden of disease worldwide. The vital rates of these ectother...
ABSTRACTArthropod-borne viruses (arboviruses) such as dengue, Zika and chikungunya constitute a sign...
The impact of global climate change on the transmission dynamics of infectious diseases is the subje...
Mosquito-borne diseases cause a major burden of disease worldwide. The vital rates of these ectother...
The rearing temperature of the immature stages can have a significant impact on the life-history tra...
The principal vector of dengue, Zika and chikungunya viruses is the mosquito Aedes aegypti, with its...
Several studies suggest the potential for climate change to increase malaria incidence in cooler, ma...
Understanding how mosquito vectors and malaria parasites interact is of fundamental interest, and it...
Considerable research effort has been directed at understanding the genetic and molecular basis of m...
Malaria transmission is known to be strongly impacted by temperature. Current understanding of how t...
The principal vector of dengue, Zika and chikungunya viruses is the mosquito Aedes aegypti, with its...
Abstract Background Malaria remains one of the most d...
Many aspects of mosquito biology are highly sensitive to variation in temperature, which has led to ...
BACKGROUND: Environmental factors, especially ambient temperature and relative humidity affect both ...
Mosquito-borne diseases cause a major burden of disease worldwide. The vital rates of these ectother...
Mosquito-borne diseases cause a major burden of disease worldwide. The vital rates of these ectother...
ABSTRACTArthropod-borne viruses (arboviruses) such as dengue, Zika and chikungunya constitute a sign...
The impact of global climate change on the transmission dynamics of infectious diseases is the subje...
Mosquito-borne diseases cause a major burden of disease worldwide. The vital rates of these ectother...
The rearing temperature of the immature stages can have a significant impact on the life-history tra...
The principal vector of dengue, Zika and chikungunya viruses is the mosquito Aedes aegypti, with its...
Several studies suggest the potential for climate change to increase malaria incidence in cooler, ma...
Understanding how mosquito vectors and malaria parasites interact is of fundamental interest, and it...