College of Life Sciences, Huaibei Normal University, 100 Dongshan Road, Huaibei235000, China.
Bioassay Research Department, Central Agricultural Pesticide Laboratory, Agricultural Research Center, 7 Nadi El-Seid Street, Dokki 12618Giza, Egypt.
Bull Entomol Res. 2021 Aug;111(4):454-463. doi: 10.1017/S0007485321000109. Epub 2021 Feb 26.
The tobacco cutworm Spodoptera litura (Lepidoptera: Noctuidae) is a polyphagous pest with a highly selective and sensitive chemosensory system involved in complex physiological behaviors such as searching for food sources, feeding, courtship, and oviposition. However, effective management strategies for controlling the insect pest populations under threshold levels are lacking. Therefore, there is an urgent need to formulate eco-friendly pest control strategies based on the disruption of the insect chemosensory system. In this study, we identified 158 putative chemosensory genes based on transcriptomic and genomic data for S. litura, including 45 odorant-binding proteins (OBPs, nine were new), 23 chemosensory proteins (CSPs), 60 odorant receptors (ORs, three were new), and 30 gustatory receptors (GRs, three were new), a number higher than those reported by previous transcriptome studies. Subsequently, we constructed phylogenetic trees based on these genes in moths and analyzed the dynamic expression of various genes in head capsules across larval instars using quantitative real-time polymerase chain reaction. Nine genes-SlitOBP8, SlitOBP9, SlitOBP25, SlitCSP1, SlitCSP7, SlitCSP18, SlitOR34, SlitGR240, and SlitGR242-were highly expressed in the heads of 3- to 5-day-old S. litura larvae. The genes differentially expressed in olfactory organs during larval development might play crucial roles in the chemosensory system of S. litura larvae. Our findings substantially expand the gene inventory for S. litura and present potential target genes for further studies on larval feeding in S. litura.
烟草夜蛾 Spodoptera litura(鳞翅目:夜蛾科)是一种多食性害虫,其具有高度选择性和敏感的化学感受系统,参与复杂的生理行为,如寻找食物源、进食、求偶和产卵。然而,在阈值水平下,控制这种昆虫种群的有效管理策略仍然缺乏。因此,迫切需要根据破坏昆虫化学感受系统制定环保型害虫防治策略。在这项研究中,我们基于 S. litura 的转录组和基因组数据鉴定了 158 个假定的化学感受基因,包括 45 个气味结合蛋白(OBPs,其中 9 个是新的)、23 个化学感受蛋白(CSPs)、60 个气味受体(ORs,其中 3 个是新的)和 30 个味觉受体(GRs,其中 3 个是新的),这一数量高于以前的转录组研究报告的数量。随后,我们基于这些基因在鳞翅目中构建了系统发育树,并使用定量实时聚合酶链反应分析了幼虫不同龄期头壳中各种基因的动态表达。9 个基因-SlitOBP8、SlitOBP9、SlitOBP25、SlitCSP1、SlitCSP7、SlitCSP18、SlitOR34、SlitGR240 和 SlitGR242-在 3-5 日龄 S. litura 幼虫的头部高度表达。在幼虫发育过程中嗅觉器官中差异表达的基因可能在 S. litura 幼虫的化学感受系统中发挥关键作用。我们的发现大大扩展了 S. litura 的基因库存,并为进一步研究 S. litura 幼虫的取食提供了潜在的靶标基因。