In the search for new strategies to control Aedes aegypti Linnaeus (Diptera: Culicidae), several studies have successfully related pyriproxyfen (PPF) tarsal transference to breeding sites (autodissemination), as well as the sterilization potential of females exposed to PPF. Potential PPF autodissemination by mosquito feces after the ingestion of sugar baits has also been proposed. Therefore, the present work evaluated several parameters, e.g., fecal production, residuality under dry and aqueous conditions, PPF excretion affecting emergence inhibition (EI) by fecal deposits of Ae. aegypti fed with attractive toxic sugar baits (ATSBs) containing PPF as well as their reproductive potential. Females were fed with ATSBs offered as droplets and the feces were collected using filter paper and transferred to plastic cups with L3 larvae to evaluate EI. The residual effect of feces in aqueous and dry conditions and PPF excretion on EI was obtained by keeping the feces in water or dried for different time intervals and using feces collected at 24-h intervals, respectively. Females received a bloodmeal after feeding on ATSBs, eggs and larval counting expressed the reproductive potential. The fecal mass was not affected by PPF concentration, but EI increased from 33 to 54% as the PPF concentration increased. The PPF excretion in the feces exceeded 96 h. The residual effect in the EI for feces kept in water was reduced by more than 60% after 30 d but was not affected under dry conditions. The fecundity and fertility of the females were reduced up to 51% and 97%, respectively.
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http://dx.doi.org/10.1093/jme/tjaa265 | DOI Listing |
Background: In western Kenya, a cluster-randomized trial is assessing the impact of attractive targeted sugar baits (ATSBs) on malaria in children enrolled in three consecutive cohorts. Here, characteristics of children and households at enrolment, and factors associated with baseline malaria prevalence are described.
Methods: Children aged 1 to < 15 years were randomly selected by cluster (n = 70) from a census database.
Parasit Vectors
December 2024
Centre for Applied Entomology and Parasitology, Keele University, Huxley Building, Staffordshire, UK.
Background: Attractive targeted sugar baits (ATSBs) are promising new interventions that can complement existing vector control tools. However, reproducible and quantitative information on the level of attractiveness of ATSBs under field conditions is needed. Therefore, we customized camera traps for close-up imaging.
View Article and Find Full Text PDFMalar J
November 2024
Malawi Liverpool Wellcome Programme, Blantyre, Malawi.
Despite its success, the increased use of insecticide-treated nets (ITNs) and indoor residual spraying (IRS) has contributed to the development of insecticide resistance in malaria vectors and shifts in biting patterns of the primary malaria vectors. The limitations portrayed by ITNs and IRS suggest that their use alone will not reduce malaria to elimination levels as the remaining untargeted vectors continue to sustain residual malaria transmission (RMT). RMT is a big challenge to malaria elimination because even at 100% ITN and IRS coverage, malaria transmission persists as outdoor vectors avoid or reduce contact with such interventions.
View Article and Find Full Text PDFJ Econ Entomol
October 2024
USDA-ARS, Appalachian Fruit Research Station, Kearneysville, WV, USA.
Previously developed behavioral approaches for controlling the apple maggot fly, Rhagoletis pomonella (Walsh) (Diptera: Tephritidae), include attract-and-kill (AK) systems such as perimeter trapping using either, odor-baited red sticky spheres or odor-baited, sticky-free attracticidal spheres with contoured tops that ensure the sustained release of both insecticide and feeding stimulant. Here, over a 3-year span in 26 commercial apple orchards across Massachusetts, New Hampshire, and Maine, we evaluated the effectiveness of a novel AK strategy for R. pomonella management.
View Article and Find Full Text PDFInsects
September 2024
Unidad de Protección Vegetal, Instituto Canario de Investigaciones Agrarias (ICIA), Crta. El Boquerón, s/n, 38270 La Laguna, Spain.
(Fabricius) (Coleoptera: Dryophthoridae) is a weevil present in the Canary Islands, affecting economically important palms such as H. Wildpret and its hybrids, for which there were no trapping tools. The larvae cause the main damage by burrowing galleries in the rachis of the leaves, causing premature drying and collapse.
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