Department of Entomology, The Ohio State University, Columbus, OH 43210, USA.
J Med Entomol. 2012 Jan;49(1):215-8. doi: 10.1603/me11122.
The soft bodies and aquatic habitats of mosquito larvae pose a challenge for applying standard RNA-interference techniques to silence expression of target genes. Here we describe a novel technique for delivering double-stranded RNA into mosquito larvae by exploiting the larva's dehydration tolerance. Larvae were dehydrated in a NaCl solution and then rehydrated in water containing double-stranded RNA. Using larvae of Culex pipiens (L.) we demonstrated the principle by knocking down expression of the gene encoding heat shock protein 90. The knockdown persisted through the pupal stage and into adulthood, with a knockdown of approximately 77% still evident on the third day of adult life. We anticipate that this relatively simple procedure will prove useful for knocking down expression of other genes as well, in larvae of this mosquito and in others.
蚊子幼虫柔软的身体和水生栖息地给应用标准的 RNA 干扰技术来沉默目标基因的表达带来了挑战。在这里,我们描述了一种通过利用幼虫的耐旱性将双链 RNA 递送到蚊子幼虫中的新技术。幼虫在 NaCl 溶液中脱水,然后在含有双链 RNA 的水中再水化。使用库蚊(Culex pipiens(L.))幼虫,我们通过敲低编码热休克蛋白 90 的基因来证明这一原理。敲低现象持续到蛹期和成虫期,在成虫期的第三天仍有大约 77%的敲低效果。我们预计,这种相对简单的程序也将证明对敲低这种蚊子和其他蚊子的幼虫中其他基因的表达有用。