Department of Entomology and Plant Pathology, North Carolina State University, Raleigh, North Carolina, 27695, USA.
Insect Mol Biol. 2023 Aug;32(4):412-423. doi: 10.1111/imb.12840. Epub 2023 Apr 8.
The corn planthopper, Peregrinus maidis, is an economically important pest of maize and sorghum. Its feeding behaviour and the viruses it transmits can significantly reduce crop yield. The control of P. maidis and its associated viruses relies heavily on insecticides. However, control has proven difficult due to limited direct exposure of P. maidis to insecticides and rapid development of resistance. As such, alternative control methods are needed. In the absence of a genome assembly for this species, we first developed transcriptomic resources. Then, with the goal of finding targets for RNAi-based control, we identified members of the ATP-binding cassette transporter family and targeted specific members via RNAi. PmABCB_160306_3, PmABCE_118332_5 and PmABCF_24241_1, whose orthologs in other insects have proven important in development, were selected for knockdown. We found that RNAi-mediated silencing of PmABCB_160306_3 impeded ovary development; disruption of PmABCE_118332_5 resulted in localized melanization; and knockdown of PmABCE_118332_5 or PmABCF_24241_1 each led to high mortality within five days. Each phenotype is similar to that found when targeting the orthologous gene in other species and it demonstrates their potential for use in RNAi-based P. maidis control. The transcriptomic data and RNAi results presented here will no doubt assist with the development of new control methods for this pest.
玉米蚜,褐飞虱,是玉米和高粱的一种重要经济害虫。它的取食行为和它传播的病毒会显著降低作物产量。对 P. maidis 和其相关病毒的控制主要依赖于杀虫剂。然而,由于 P. maidis 与杀虫剂的直接接触有限且对杀虫剂的抗性迅速发展,控制工作证明很困难。因此,需要替代的控制方法。由于该物种没有基因组组装,我们首先开发了转录组资源。然后,我们的目标是寻找基于 RNAi 的控制的靶标,通过 RNAi 鉴定 ABC 转运蛋白家族的成员,并针对特定成员进行靶向。选择了在其他昆虫中对发育很重要的 PmABCB_160306_3、PmABCE_118332_5 和 PmABCF_24241_1 进行 RNAi 敲低。我们发现,PmABCB_160306_3 的 RNAi 介导沉默阻碍了卵巢发育;PmABCE_118332_5 的破坏导致局部黑化;而 PmABCE_118332_5 或 PmABCF_24241_1 的 RNAi 敲低都会导致在五天内死亡率很高。每种表型都类似于针对其他物种的同源基因时发现的表型,这表明它们有潜力用于基于 RNAi 的 P. maidis 控制。这里呈现的转录组数据和 RNAi 结果无疑将有助于为这种害虫开发新的控制方法。