Evaluating the risk of emergence and transmission of vector-borne diseases requires knowledge of the genetic and environmental contributions to pathogen transmission traits. Compared to the significant effort devoted to understanding the biology of malaria transmission from vertebrate hosts to mosquito vectors, the strategies that malaria parasites have evolved to maximize transmission from vectors to vertebrate hosts have been largely overlooked. While determinants of infection success within the mosquito host have recently received attention, the causes of variability for other key transmission traits of malaria, namely the duration of parasite development and its virulence within the vector, as well as its ability to alter mosquito behav...
Disease transmission is a product of mechanisms and interactions at multiple levels of biological or...
Several laboratory studies of malaria parasites (Plasmodium sp.) and some field observations suggest...
Several laboratory studies of malaria parasites (Plasmodium sp.) and some field observations suggest...
Evaluating the risk of emergence and transmission of vector-borne diseases requires knowledge of the...
Evaluating the risk of emergence and transmission of vector-borne diseases requires knowledge of the...
In this paper, pathogen evolution will not be considered in the extended concept of adaptation throu...
Models of malaria epidemiology and evolution are frequently based on the assumption that vector-para...
infection is treated primarily as a vector trait, although it is a composite trait expressing the j...
Abstract Background A series of elegant experiments w...
Vector susceptibility to Plasmodium infection is treated primarily as a vector trait, although it is...
BACKGROUND: A series of elegant experiments was recently published which demonstrated that transmiss...
The genetic basis of mosquito resistance to malaria parasites is well established and currently rece...
International audienceThe transmission of pathogens by arthropods is dependent on the relationships ...
International audienceInteractions between Plasmodium parasites and their Anopheles vectors are cent...
Models of malaria epidemiology and evolution are frequently based on the assumption that vector–para...
Disease transmission is a product of mechanisms and interactions at multiple levels of biological or...
Several laboratory studies of malaria parasites (Plasmodium sp.) and some field observations suggest...
Several laboratory studies of malaria parasites (Plasmodium sp.) and some field observations suggest...
Evaluating the risk of emergence and transmission of vector-borne diseases requires knowledge of the...
Evaluating the risk of emergence and transmission of vector-borne diseases requires knowledge of the...
In this paper, pathogen evolution will not be considered in the extended concept of adaptation throu...
Models of malaria epidemiology and evolution are frequently based on the assumption that vector-para...
infection is treated primarily as a vector trait, although it is a composite trait expressing the j...
Abstract Background A series of elegant experiments w...
Vector susceptibility to Plasmodium infection is treated primarily as a vector trait, although it is...
BACKGROUND: A series of elegant experiments was recently published which demonstrated that transmiss...
The genetic basis of mosquito resistance to malaria parasites is well established and currently rece...
International audienceThe transmission of pathogens by arthropods is dependent on the relationships ...
International audienceInteractions between Plasmodium parasites and their Anopheles vectors are cent...
Models of malaria epidemiology and evolution are frequently based on the assumption that vector–para...
Disease transmission is a product of mechanisms and interactions at multiple levels of biological or...
Several laboratory studies of malaria parasites (Plasmodium sp.) and some field observations suggest...
Several laboratory studies of malaria parasites (Plasmodium sp.) and some field observations suggest...