Oppert Brenda, Perkin Lindsey
USDA, Agricultural Research Service, Center for Grain and Animal Health Research, Manhattan, KS, United States.
USDA, Agricultural Research Service, Southern Plains Agricultural Research Center, College Station, TX, United States.
Front Microbiol. 2019 Nov 14;10:2570. doi: 10.3389/fmicb.2019.02570. eCollection 2019.
Targeting genes RNA interference (RNAi) has become a successful method to reduce pest populations. Ideally, the expression of a gene critical for a life function in the insect is targeted by specific dsRNA, spray or oral delivery. Experts have developed working guidelines in the development and regulation of RNAi as a pesticide. We argue that an important tool in the validation of RNAi is genome-wide expression analysis in the targeted pest, and we name this approach RNAiSeq. We have used RNAiSeq in the coleopteran model to validate knockdown of target genes, and to examine the effect of knockdown on other genes. With RNAiSeq, we identified compensation responses to the knockdown of a gene encoding a major digestive enzyme in larvae that correlated to the responses we have observed with ingested protease inhibitors. Compensation can mask RNAi phenotypic responses and is important to understand in the context of efficacy. RNAiSeq also has identified new gene interactions that were previously unassociated with the target gene, important in the context of the large number of genes without associated functions in insects and other organisms. We discuss other research where RNAiSeq has led to important findings. These data not only provide validation of target knockdown, but also further identify changes in the expression of other genes impacted by the knockdown. From the context of pest control, this information can be used to predict genetic changes that will impact the efficacy of RNAi products in target pests.
靶向基因 RNA干扰(RNAi)已成为减少害虫种群数量的一种成功方法。理想情况下,通过特定的双链RNA(dsRNA)、喷雾或口服给药来靶向昆虫中对生命功能至关重要的基因的表达。专家们已经制定了RNAi作为杀虫剂开发和监管的工作指南。我们认为,RNAi验证中的一个重要工具是对目标害虫进行全基因组表达分析,我们将这种方法命名为RNAiSeq。我们已在鞘翅目模型中使用RNAiSeq来验证目标基因的敲低,并研究敲低对其他基因的影响。通过RNAiSeq,我们在幼虫中鉴定出对一种主要消化酶编码基因敲低的补偿反应,这与我们用摄入的蛋白酶抑制剂所观察到的反应相关。补偿可能会掩盖RNAi的表型反应,在药效方面理解这一点很重要。RNAiSeq还鉴定出了以前与目标基因无关的新基因相互作用,这在昆虫和其他生物体中大量无相关功能的基因背景下很重要。我们讨论了RNAiSeq带来重要发现的其他研究。这些数据不仅提供了目标基因敲低的验证,还进一步确定了受敲低影响的其他基因表达的变化。从害虫防治的角度来看,这些信息可用于预测会影响RNAi产品在目标害虫中药效的遗传变化。