Targeting Mosquitoes through Generation of an Insecticidal RNAi Yeast Strain Using Cas-CLOVER and Super PiggyBac Engineering in Saccharomyces cerevisiae

生物 RNA干扰 酵母 酿酒酵母 基因敲除 表情盒 灭蚊 基因 生物技术 遗传学 核糖核酸 重组DNA 载体(分子生物学) 免疫学 疟疾
作者
Corey Brizzee,Keshava Mysore,Teresia M. Njoroge,Stephen J. McConnell,Majidah Hamid-Adiamoh,Akilah T. M. Stewart,Jonathan T. Kinder,Jack T. Crawford,Molly Duman-Scheel
出处
期刊:Journal of Fungi [Multidisciplinary Digital Publishing Institute]
卷期号:9 (11): 1056-1056 被引量:2
标识
DOI:10.3390/jof9111056
摘要

The global deployment of RNAi yeast insecticides involves transitioning from the use of laboratory yeast strains to more robust strains that are suitable for scaled fermentation. In this investigation, the RNA-guided Cas-CLOVER system was used in combination with Piggybac transposase to produce robust Saccharomyces cerevisiae strains with multiple integrated copies of the Sh.463 short hairpin RNA (shRNA) insecticide expression cassette. This enabled the constitutive high-level expression of an insecticidal shRNA corresponding to a target sequence that is conserved in mosquito Shaker genes, but which is not found in non-target organisms. Top-expressing Cas-CLOVER strains performed well in insecticide trials conducted on Aedes, Culex, and Anopheles larvae and adult mosquitoes, which died following consumption of the yeast. Scaled fermentation facilitated the kilogram-scale production of the yeast, which was subsequently heat-killed and dried. These studies indicate that RNAi yeast insecticide production can be scaled, an advancement that may one day facilitate the global distribution of this new mosquito control intervention.
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