Fitness effect and transcription profile reveal sublethal effect of nitenpyram on the predator Chrysopa pallens (Neuroptera: Chrysopidae)

Author:

Du Qiankun12,Shan Yongpan2,Hu Hongyan2,Wu Changcai2,Wang Dan2,Song Xianpeng2,Ma Yajie2,Xi Jianping2,Ren Xiangliang123ORCID,Ma Xiaoyan123,Ma Yan12

Affiliation:

1. Zhengzhou Research Base, National Key Laboratory of Cotton Bio‐breeding and Integrated Utilization Zhengzhou University Zhengzhou China

2. National Key Laboratory of Cotton Bio‐breeding and Integrated Utilization, Institute of Cotton Research Chinese Academy of Agricultural Sciences Anyang China

3. Western Agricultural Research Center Chinese Academy of Agricultural Sciences Changji China

Abstract

AbstractAlthough neonicotinoids are widely used and important insecticide, there are growing concerns about their effect on nontarget insects and other organisms. Moreover, the effects of nitenpyram (NIT), a second generation of neonicotinoid insecticides, on Chrysopa pallens are still unclear. Therefore, this study purposed to investigate the acute toxicity of NIT to C. pallens using the spotting method. To examine the potential effects of a sublethal dose of NIT (LD30, 1.85 ng of active ingredient per insect) on C. pallens, we constructed the life tables and analyzed the transcriptome data. The life table results showed that the period of second instar larvae, adult pre‐oviposition period and total pre‐oviposition period were significantly prolonged after exposure to sublethal dose of NIT, but had no significant effects on the other instars, longevity, oviposition days, and fecundity. The population parameters, including the preadult survival rate, gross reproduction rate, net reproductive rate, the intrinsic rate of increase, and finite rate of increase, were not significantly affected, and only the mean generation time was significantly prolonged by NIT. Transcriptome analysis showed that there were 68 differentially expressed genes (DEGs), including 50 upregulated genes and 18 downregulated genes. Moreover, 13 DEGs related to heat shock protein, nose resistant to fluoxetine protein 6, and prophenoloxidas were upregulated. This study showed the potential effects of sublethal doses of NIT on C. pallens and provided a theoretical reference for the comprehensive application of chemical and biological control in integrated pest management.

Publisher

Wiley

Subject

Insect Science,General Medicine,Biochemistry,Physiology

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