Zhengzhou Research Base, National Key Laboratory of Cotton Bio-breeding and Integrated Utilization, Zhengzhou University, Zhengzhou, China.
National Key Laboratory of Cotton Bio-breeding and Integrated Utilization, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang, China.
Arch Insect Biochem Physiol. 2024 Jan;115(1):e22073. doi: 10.1002/arch.22073.
Although 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 (LD , 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.
尽管新烟碱类杀虫剂被广泛使用且十分重要,但人们对其对非靶标昆虫和其他生物的影响越来越关注。此外,新烟碱类杀虫剂第二代药剂吡虫啉(NIT)对丽草蛉的影响尚不清楚。因此,本研究采用点滴法研究了 NIT 对丽草蛉的急性毒性。为了研究亚致死剂量 NIT(LD ,每只昆虫 1.85ng 有效成分)对丽草蛉的潜在影响,我们构建了生命表并分析了转录组数据。生命表结果表明,亚致死剂量 NIT 暴露后,二龄幼虫期、成虫预产卵期和总预产卵期显著延长,但对其他龄期、成虫寿命、产卵天数和产卵量没有显著影响。种群参数,包括预成虫存活率、总繁殖率、净生殖率、内禀增长率和有限增长率,没有受到显著影响,只有 NIT 显著延长了平均世代时间。转录组分析表明,有 68 个差异表达基因(DEGs),包括 50 个上调基因和 18 个下调基因。此外,有 13 个与热休克蛋白、耐氟西汀的鼻蛋白 6 和原酚氧化酶相关的 DEGs 上调。本研究表明亚致死剂量 NIT 对丽草蛉的潜在影响,为综合虫害管理中化学和生物防治的综合应用提供了理论参考。