Background
An
.
funestus
is a major Afrotropical vector of human malaria. This study sought to investigate the larval ecology, sporozoite infection rates and blood meal sources of
An
.
funestus
in western Kenya.
Methods
Larval surveys were carried out in Bungoma (Highland) and Kombewa (lowland) of western Kenya. Aquatic habitats were identified, characterized, georeferenced and carefully examined for mosquito larvae and predators. Indoor resting mosquitoes were sampled using pyrethrum spray catches. Adults and larvae were morphologically and molecularly identified to species. Sporozoite infections and blood meal sources were detected using real-time PCR and ELISA respectively.
Results
Of the 151 aquatic habitats assessed, 62/80 (78%) in Bungoma and 58/71(82%) in Kombewa were positive for mosquito larvae. Of the 3,193 larvae sampled,
An
.
funestus
larvae constitute 38% (1224/3193). Bungoma recorded a higher number of
An
.
funestus
larvae (85%, 95%, CI, 8.722–17.15) than Kombewa (15%, 95%, CI, 1.33–3.91). Molecular identification of larvae showed that 89% (n = 80) were
An
.
funestus
. Approximately 59%, 35% and 5% of
An
.
funestus
larvae co-existed with
An
.
gambiae s
.
l
,
Culex spp
and
An
.
coustani
in the same habitats respectively. Of 1,221
An
.
funestus s
.
l
adults sampled, molecular identifications revealed that
An
.
funestus
constituted 87% (n = 201) and 88% (n = 179) in Bungoma and Kombewa, respectively. The
Plasmodium falciparum
sporozoite rate of
An
.
funestus
in Bungoma and Kombewa was 2% (3/174) and 1% (2/157), respectively, and the human blood index of
An
.
funestus
was 84% (48/57) and 89% (39/44) and for Bungoma and Kombewa, respectively.
Conclusion
Man-made ponds had the highest abundance of
An
.
funestus
larvae. Multiple regression and principal component analyses identified the distance to the nearest house as the key environmental factor associated with the abundance of
An
.
funestus
larvae in aquatic habitats. This study serves as a guide for the control of
An
.
funestus
and other mosquito species to complement existing vector control strategies.