Vertical Transmission of Zika Virus in Aedes aegypti Mosquitoes
Author(s) -
Saravanan Thangamani,
Jing Huang,
Charles E. Hart,
Hilda Guzmán,
Robert B. Tesh
Publication year - 2016
Publication title -
american journal of tropical medicine and hygiene
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.015
H-Index - 151
eISSN - 1476-1645
pISSN - 0002-9637
DOI - 10.4269/ajtmh.16-0448
Subject(s) - aedes aegypti , zika virus , aedes albopictus , dengue fever , virology , biology , flavivirus , aedes , transmission (telecommunications) , dengue virus , vector (molecular biology) , yellow fever , japanese encephalitis , virus , flaviviridae , encephalitis , viral disease , larva , ecology , genetics , gene , engineering , recombinant dna , electrical engineering
Previous experimental studies have demonstrated that a number of mosquito-borne flavivirus pathogens are vertically transmitted in their insect vectors, providing a mechanism for these arboviruses to persist during adverse climatic conditions or in the absence of a susceptible vertebrate host. In this study, designed to test whether Zika virus (ZIKV) could be vertically transmitted, female Aedes aegypti and Aedes albopictus were injected with ZIKV, and their F 1 adult progeny were tested for ZIKV infection. Six of 69 Ae. aegypti pools, comprised of a total of 1,738 F 1 adults, yielded ZIKV upon culture, giving a minimum filial infection rate of 1:290. In contrast, none of 803 F 1 Ae. albopictus adults (32 pools) yielded ZIKV. The MFIR for Ae. aegypti was comparable to MFIRs reported for other flaviviruses in mosquitoes, including dengue, Japanese encephalitis, yellow fever, West Nile, and St. Louis encephalitis viruses. The results suggest that vertical transmission may provide a potential mechanism for the virus to survive during adverse conditions.
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