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1.
Proc Biol Sci ; 286(1914): 20192136, 2019 11 06.
Article in English | MEDLINE | ID: mdl-31690238

ABSTRACT

Interactions between Aedes (Stegomyia) species and non-human primate (NHP) and human hosts govern the transmission of the pathogens, dengue, zika, yellow fever and chikungunya viruses. Little is known about Aedes mosquito olfactory interactions with these hosts in the domestic and sylvatic cycles where these viruses circulate. Here, we explore how the different host-derived skin odours influence Aedes mosquito responses in these two environments. In field assays, we show that the cyclic ketone cyclohexanone is a signature cue for Aedes mosquitoes to detect the NHP baboon, sykes and vervet, whereas for humans, it is the unsaturated aliphatic keto-analogue 6-methyl-5-hepten-2-one (sulcatone). We find that in the sylvatic environment, CO2-baited traps combined with either cyclohexanone or sulcatone increased trap catches of Aedes mosquitoes compared to traps either baited with CO2 alone or CO2 combined with NHP- or human-derived crude skin odours. In the domestic environment, each of these odourants and crude human skin odours increased Aedes aegypti catches in CO2-baited traps. These results expand our knowledge on the role of host odours in the ecologies of Aedes mosquitoes, and the likelihood of associated spread of pathogens between primates and humans. Both cyclohexanone and sulcatone have potential practical applications as lures for monitoring Aedes disease vectors.


Subject(s)
Aedes/physiology , Dengue/transmission , Mosquito Vectors , Animals , Dengue Virus , Disease Vectors , Humans , Smell
2.
Acta Trop ; 185: 98-106, 2018 Sep.
Article in English | MEDLINE | ID: mdl-29709631

ABSTRACT

Several studies have shown that odors of plant and animal origin can be developed into lures for use in surveillance of mosquito vectors of infectious diseases. However, the effect of combining plant- and mammalian-derived odors into an improved lure for monitoring both nectar- and blood-seeking mosquito populations in traps is yet to be explored. Here we used both laboratory dual choice olfactometer and field assays to investigate responses of the malaria vector, Anopheles gambiae, to plant- and mammalian-derived compounds and a combined blend derived from these two odor sources. Using subtractive bioassays in dual choice olfactometer we show that a 3-component terpenoid plant-derived blend comprising (E)-linalool oxide, ß-pinene, ß-ocimene was more attractive to females of An. gambiae than (E)-linalool oxide only (previously found attractive in field trials) and addition of limonene to this blend antagonized its attractiveness. Likewise, a mammalian-derived lure comprising the aldehydes heptanal, octanal, nonanal and decanal, was more preferred than (E)-linalool oxide. Surprisingly, combining the plant-derived 3-component blend with the mammalian derived 4-component blend attracted fewer females of An. gambiae than the individual blends in laboratory assays. However, this pattern was not replicated in field trials, where we observed a dose-dependent effect on trap catches while combining both blends with significantly improved trap catches at higher doses. The observed dose-dependent attractiveness for An. gambiae has practical implication in the design of vector control strategies involving kairomones from plant- and mammalian-based sources.


Subject(s)
Anopheles/physiology , Mammals , Mosquito Vectors/physiology , Odorants , Pheromones/pharmacology , Plants , Acyclic Monoterpenes , Aldehydes/pharmacology , Alkenes/pharmacology , Animals , Anopheles/drug effects , Bicyclic Monoterpenes , Bridged Bicyclo Compounds/pharmacology , Cyclohexanols/pharmacology , Cyclohexenes/pharmacology , Female , Limonene , Malaria/transmission , Monoterpenes/pharmacology , Mosquito Control , Mosquito Vectors/drug effects , Terpenes/pharmacology , Trityl Compounds/pharmacology
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