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意外后果:非靶标农药对褐飞虱微生物群落的破坏。

Unintended consequences: Disrupting microbial communities of Nilaparvata lugens with non-target pesticides.

机构信息

State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, China; Hubei Insect Resources Utilization and Sustainable Pest Management Key Laboratory, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.

Hubei Insect Resources Utilization and Sustainable Pest Management Key Laboratory, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Pestic Biochem Physiol. 2023 Aug;194:105522. doi: 10.1016/j.pestbp.2023.105522. Epub 2023 Jul 9.

Abstract

Insects are frequently exposed to a range of insecticides that can alter the structure of the commensal microbiome. However, the effects of exposure to non-target pesticides (including non-target insecticides and fungicides) on insect pest microbiomes are still unclear. In the present study, we exposed Nilaparvata lugens to three target insecticides (nitenpyram, pymetrozine, and avermectin), a non-target insecticide (chlorantraniliprole), and two fungicides (propiconazole and tebuconazole), and observed changes in the microbiome's structure and function. Our results showed that both non-target insecticide and fungicides can disrupt the microbiome's structure. Specifically, symbiotic bacteria of N. lugens were more sensitive to non-target insecticide compared to target insecticide, while the symbiotic fungi were more sensitive to fungicides. We also found that the microbiome in the field strain was more stable under pesticides exposure than the laboratory strain (a susceptible strain), and core microbial species g_Pseudomonas, s_Acinetobacter soli, g_Lactobacillus, s_Metarhizium minus, and s_Penicillium citrinum were significantly affected by specifically pesticides. Furthermore, the functions of symbiotic bacteria in nutrient synthesis were predicted to be significantly reduced by non-target insecticide. Our findings contribute to a better understanding of the impact of non-target pesticides on insect microbial communities and highlight the need for scientific and rational use of pesticides.

摘要

昆虫经常接触各种杀虫剂,这些杀虫剂可能会改变共生微生物组的结构。然而,暴露于非靶标农药(包括非靶标杀虫剂和杀菌剂)对害虫微生物组的影响仍不清楚。在本研究中,我们将褐飞虱暴露于三种靶标杀虫剂(吡虫啉、吡丙醚和阿维菌素)、一种非靶标杀虫剂(氯虫苯甲酰胺)和两种杀菌剂(丙环唑和戊唑醇),观察了微生物组结构和功能的变化。我们的结果表明,非靶标杀虫剂和杀菌剂都可以破坏微生物组的结构。具体而言,褐飞虱的共生细菌对非靶标杀虫剂比靶标杀虫剂更敏感,而共生真菌对杀菌剂更敏感。我们还发现,田间种群的微生物组在农药暴露下比实验室种群(敏感种群)更稳定,并且核心微生物物种 g_Pseudomonas、s_Acinetobacter soli、g_Lactobacillus、s_Metarhizium minus 和 s_Penicillium citrinum 受到特定杀虫剂的显著影响。此外,非靶标杀虫剂预测会显著降低共生细菌在营养合成中的功能。我们的研究结果有助于更好地理解非靶标农药对昆虫微生物群落的影响,并强调需要科学合理地使用农药。

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