A Yeast RNA-Interference Pesticide Targeting the Irx Gene Functions as a Broad-Based Mosquito Larvicide and Adulticide

Author:

Mysore KeshavaORCID,Sun Longhua,Hapairai Limb K.,Wang Chien-Wei,Igiede Jessica,Roethele Joseph B.,Scheel Nicholas D.,Scheel Max P.,Li Ping,Wei Na,Severson David W.ORCID,Duman-Scheel MollyORCID

Abstract

Concerns for widespread insecticide resistance and the unintended impacts of insecticides on nontarget organisms have generated a pressing need for mosquito control innovations. A yeast RNAi-based insecticide that targets a conserved site in mosquito Irx family genes, but which has not yet been identified in the genomes of nontarget organisms, was developed and characterized. Saccharomyces cerevisiae constructed to express short hairpin RNA (shRNA) matching the target site induced significant Aedes aegypti larval death in both lab trials and outdoor semi-field evaluations. The yeast also induced high levels of mortality in adult females, which readily consumed yeast incorporated into an attractive targeted sugar bait (ATSB) during simulated field trials. A conserved requirement for Irx function as a regulator of proneural gene expression was observed in the mosquito brain, suggesting a possible mode of action. The larvicidal and adulticidal properties of the yeast were also verified in Aedes albopictus, Anopheles gambiae, and Culexquinquefasciatus mosquitoes, but the yeast larvicide was not toxic to other nontarget arthropods. These results indicate that further development and evaluation of this technology as an ecofriendly control intervention is warranted, and that ATSBs, an emerging mosquito control paradigm, could potentially be enriched through the use of yeast-based RNAi technology.

Funder

Showalter Scholar

United States Department of Defense

Publisher

MDPI AG

Subject

Insect Science

Reference62 articles.

1. Global Plan for Insecticide Resistance Management in Malaria Vectors,2012

2. Dengue Guidelines for Diagnosis, Treatment, Prevention and Control,2009

3. Saccharomyces cerevisiae (Baker’s Yeast) as an Interfering RNA Expression and Delivery System

4. Advances in oral RNAi for disease vector mosquito research and control

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