Gao Haoli, Yuan Xiaowei, Lin Xumin, Zhang Huihui, Zou Jianzheng, Liu Zewen
Key laboratory of Integrated Management of Crop Diseases and Pests (Ministry of Education), College of Plant Protection, Nanjing Agricultural University, Weigang 1, Nanjing 210095, China.
J Agric Food Chem. 2023 Apr 7. doi: 10.1021/acs.jafc.3c00895.
Flonicamid inhibits the feeding of piercing-sucking pests as a selective systemic insecticide. The brown planthopper (BPH), (Stål), is one of the most serious pests on rice. During feeding, it uses its stylet to collect sap by penetrating the phloem, and at the same time, it delivers saliva into the rice plant. Insect salivary proteins play important roles in feeding and interacting with plants. Whether flonicamid affects the expression of salivary protein genes and then inhibits the feeding of BPH is not clear. Here, from 20 functionally characterized salivary proteins, we screened five salivary proteins (NlShp, NlAnnix5, Nl16, Nl32, and NlSP7) whose gene expressions were significantly inhibited by flonicamid. We performed experimental analysis on two of them (Nl16 and Nl32). RNA interference of Nl32 significantly reduced the survival rate of BPH. Electrical penetration graph (EPG) experiments showed that both flonicamid treatment and knockdown of Nl16 and Nl32 genes significantly reduced the feeding activity of in the phloem and also reduced the honeydew excretion and fecundity. These results suggested that the inhibition of flonicamid on the feeding behavior in might be partially attributed to its effect on the expression of salivary protein genes. This study provides a new insight into the mechanism of action of flonicamid on insect pests.
氟啶虫酰胺作为一种选择性内吸性杀虫剂,可抑制刺吸式害虫的取食。褐飞虱(Nilaparvata lugens (Stål))是水稻上最严重的害虫之一。在取食过程中,它用口针穿透韧皮部来吸取汁液,同时将唾液注入水稻植株。昆虫唾液蛋白在取食以及与植物相互作用中发挥着重要作用。氟啶虫酰胺是否会影响唾液蛋白基因的表达进而抑制褐飞虱的取食尚不清楚。在此,我们从20种已明确功能的唾液蛋白中筛选出5种唾液蛋白(NlShp、NlAnnix5、Nl16、Nl32和NlSP7),其基因表达受到氟啶虫酰胺的显著抑制。我们对其中两种(Nl16和Nl32)进行了实验分析。Nl32的RNA干扰显著降低了褐飞虱的存活率。刺吸电位图谱(EPG)实验表明,氟啶虫酰胺处理以及Nl16和Nl32基因的敲低均显著降低了褐飞虱在韧皮部的取食活性,同时也减少了蜜露分泌和繁殖力。这些结果表明,氟啶虫酰胺对褐飞虱取食行为的抑制可能部分归因于其对唾液蛋白基因表达的影响。本研究为氟啶虫酰胺对害虫的作用机制提供了新的见解。