Identification of highly effective target genes for RNAi-mediated control of emerald ash borer, Agrilus planipennis

TB Rodrigues, JJ Duan, SR Palli, LK Rieske - Scientific Reports, 2018 - nature.com
Scientific Reports, 2018nature.com
Recent study has shown that RNA interference (RNAi) is efficient in emerald ash borer
(EAB), Agrilus planipennis, and that ingestion of double-stranded RNA (dsRNA) targeting
specific genes causes gene silencing and mortality in neonates. Here, we report on the
identification of highly effective target genes for RNAi-mediated control of EAB. We screened
13 candidate genes in neonate larvae and selected the most effective target genes for
further investigation, including their effect on EAB adults and on a non-target organism …
Abstract
Recent study has shown that RNA interference (RNAi) is efficient in emerald ash borer (EAB), Agrilus planipennis, and that ingestion of double-stranded RNA (dsRNA) targeting specific genes causes gene silencing and mortality in neonates. Here, we report on the identification of highly effective target genes for RNAi-mediated control of EAB. We screened 13 candidate genes in neonate larvae and selected the most effective target genes for further investigation, including their effect on EAB adults and on a non-target organism, Tribolium castaneum. The two most efficient target genes selected, hsp (heat shock 70-kDa protein cognate 3) and shi (shibire), caused up to 90% mortality of larvae and adults. In EAB eggs, larvae, and adults, the hsp is expressed at higher levels when compared to that of shi. Ingestion of dsHSP and dsSHI caused mortality in both neonate larvae and adults. Administration of a mixture of both dsRNAs worked better than either dsRNA by itself. In contrast, injection of EAB.dsHSP and EAB.dsSHI did not cause mortality in T. castaneum. Thus, the two genes identified cause high mortality in the EAB with no apparent phenotype effects in a non-target organism, the red flour beetle, and could be used in RNAi-mediated control of this invasive pest.
nature.com
以上显示的是最相近的搜索结果。 查看全部搜索结果