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拟除虫菊酯暴露会改变白纹伊蚊内部微生物群落的组成和功能。

Pyrethroids exposure alters the community and function of the internal microbiota in Aedes albopictus.

机构信息

Centers for Disease Control and Prevention of PLA, Beijing, China.

Centers for Disease Control and Prevention of PLA, Beijing, China; Department of Epidemiology and Biostatistics, School of Public Health, Anhui Medical University, Hefei, China.

出版信息

Ecotoxicol Environ Saf. 2023 Mar 1;252:114579. doi: 10.1016/j.ecoenv.2023.114579. Epub 2023 Jan 26.

Abstract

Large amounts of insecticides bring selection pressure and then develop insecticide resistance in Aedes albopictus. This study demonstrated for the first time the effect of pyrethroid exposure on the internal microbiota in Ae. albopictus. 36, 48, 57 strains of virgin adult Ae. albopictus were exposed to the pyrethroids deltamethrin (Dme group), β-cypermethrin (Bcy group), and cis-permethrin (Cper group), respectively, with n-hexane exposure (Hex group) as the controls (n = 36). The internal microbiota community and functions were analyzed based on the metagenomic analysis. The analysis of similarity (ANOSIM) results showed that the Hex/Bcy (p = 0.001), Hex/Cper (p = 0.006), Hex/Dme (p = 0.001) groups were well separated, and the internal microbes of Ae. albopictus vary in the composition and functions depending on the type of pyrethroid insecticide they are applied. Four short chain fatty acid-producing genera, Butyricimonas, Prevotellaceae, Anaerococcus, Pseudorhodobacter were specifically absent in the pyrethroid-exposed mosquitoes. Morganella and Streptomyces were significantly enriched in cis-permethrin-exposed mosquitoes. Wolbachia and Chryseobacterium showed significant enrichment in β-cypermethrin-exposed mosquitoes. Pseudomonas was significantly abundant in deltamethrin-exposed mosquitoes. The significant proliferation of these bacteria may be closely related to insecticide metabolism. Our study recapitulated a specifically enhanced metabolic networks relevant to the exposure to cis-permethrin and β-cypermethrin, respectively. Benzaldehyde dehydrogenase (EC 1.2.1.28), key enzyme in aromatic compounds metabolism, was detected enhanced in cis-permethrin and β-cypermethrin exposed mosquitoes. The internal microbiota metabolism of aromatic compounds may be important influencing factors for pyrethroid resistance. Future work will be needed to elucidate the specific mechanisms by which mosquito microbiota influences host resistance and vector ability.

摘要

大量杀虫剂的使用会带来选择压力,从而导致白纹伊蚊产生抗药性。本研究首次证明了拟除虫菊酯暴露对白纹伊蚊内部微生物群的影响。将 36、48、57 只处女成蚊分别暴露于拟除虫菊酯(Dme 组)、β-氯氰菊酯(Bcy 组)和顺式氯氰菊酯(Cper 组)中,以正己烷暴露(Hex 组)作为对照(n=36)。基于宏基因组分析,分析了内部微生物群落和功能。相似性分析(ANOSIM)结果表明,Hex/Bcy(p=0.001)、Hex/Cper(p=0.006)、Hex/Dme(p=0.001)组分离良好,白纹伊蚊的内部微生物在组成和功能上因所应用的拟除虫菊酯类型而异。四种产生短链脂肪酸的属,丁酸单胞菌、拟杆菌科、厌氧球菌和假红杆菌,在接触拟除虫菊酯的蚊子中特异性缺失。在顺式氯氰菊酯暴露的蚊子中,摩根菌和链霉菌明显富集。在β-氯氰菊酯暴露的蚊子中,沃尔巴克氏体和黄杆菌表现出明显的富集。在接触溴氰菊酯的蚊子中,假单胞菌显著丰富。这些细菌的显著增殖可能与杀虫剂代谢密切相关。我们的研究分别再现了与顺式氯氰菊酯和β-氯氰菊酯暴露相关的特定增强代谢网络。在接触顺式氯氰菊酯和β-氯氰菊酯的蚊子中,检测到芳香族化合物代谢的关键酶苯甲醛脱氢酶(EC 1.2.1.28)增强。芳香族化合物的内部微生物群代谢可能是影响拟除虫菊酯抗性的重要影响因素。未来的工作需要阐明蚊虫微生物群如何影响宿主抗性和媒介能力的具体机制。

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