Department of Plants and Crops, Faculty of Bioscience Engineering, Ghent University, B-9000 Ghent, Belgium; Departamento de Entomologia, Universidade Federal de Viçosa, Viçosa, MG 36570-900, Brazil.
Department of Plants and Crops, Faculty of Bioscience Engineering, Ghent University, B-9000 Ghent, Belgium.
Sci Total Environ. 2022 Aug 1;832:154746. doi: 10.1016/j.scitotenv.2022.154746. Epub 2022 Mar 23.
RNA interference (RNAi)-based pesticides are promising novel pest management products that might reduce environmental impacts compared to other pesticides. Their sequence-guided mode of action facilitates a high species-selectivity, preventing harm on non-target organisms. However, there is currently no consensus on the minimum needed sequence similarity for efficient RNAi in insects and studies have shown that adverse effects in non-targets cannot always be ruled out a priori. This study investigates the effects of exposing the parasitoid wasp Telenomus podisi to double-stranded RNA (dsRNA) which is lethal to its host, the Neotropical brown stink bug Euschistus heros. Feeding T. podisi with wasp-specific dsRNA targeting the vATPase A and actin-2 genes led to 76.4 ± 9.9% and 76.7 ± 8.8% mortality respectively, demonstrating that dietary RNAi is functional in T. podisi. When feeding T. podisi with E. heros-specific dsRNA targeting the same genes, no lethal or sublethal effects were observed. To link sequence similarity to potential gene silencing effects in the parasitoids, the expression of genes showing the highest degree of similarity (17-21 nucleotide matches) with these two target genes was monitored and was found unaffected by the E. heros-specific dsRNA. Our study confirms that RNAi was in this case highly specific and that for E. heros, RNAi-based pesticides can be used complementary to biological control in an integrated pest management context.
RNA 干扰(RNAi)基农药是有前途的新型害虫管理产品,与其他农药相比,它们可能减少对环境的影响。其序列引导的作用模式具有很高的物种选择性,防止对非目标生物造成伤害。然而,目前对于昆虫中有效 RNAi 所需的最小序列相似性还没有共识,并且研究表明,非目标生物的不利影响并不总是可以事先排除。本研究调查了向寄生蜂 Telenomus podisi 暴露双链 RNA(dsRNA)的影响,dsRNA 对其宿主新热带棕色臭虫 Euschistus heros 是致命的。用针对 vATPase A 和肌动蛋白-2 基因的特异性 dsRNA 喂养 T. podisi,分别导致 76.4%±9.9%和 76.7%±8.8%的死亡率,表明饮食 RNAi 在 T. podisi 中是有效的。当用针对相同基因的 E. heros 特异性 dsRNA 喂养 T. podisi 时,没有观察到致死或亚致死效应。为了将序列相似性与寄生蜂中潜在的基因沉默效应联系起来,监测了与这两个靶基因显示出最高相似性(17-21 个核苷酸匹配)的基因的表达,并且发现 E. heros 特异性 dsRNA 对其没有影响。我们的研究证实,在这种情况下,RNAi 具有高度特异性,对于 E. heros,可以将 RNAi 基农药与生物防治结合使用,在综合害虫管理中互补使用。