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氯虫苯甲酰胺抗性品系中P450-单加氧酶活性及CYP6D1表达

The P450-Monooxygenase Activity and CYP6D1 Expression in the Chlorfenapyr-Resistant Strain of L.

作者信息

Krestonoshina Kseniya, Melnichuk Anastasia, Kinareikina Anna, Maslakova Kseniya, Yangirova Liana, Silivanova Elena

机构信息

All-Russian Scientific Research Institute of Veterinary Entomology and Arachnology-Branch of Federal State Institution Federal Research Centre Tyumen Scientific Centre of Siberian Branch of the Russian Academy of Sciences (ASRIVEA)-Branch of Tyumen Scientific Centre SB RAS Institutskaya St. 2, Tyumen 625041, Russia.

出版信息

Insects. 2024 Jun 20;15(6):461. doi: 10.3390/insects15060461.

Abstract

The house fly L. is one of the most common insects of veterinary and medical importance worldwide; its ability to develop resistance to a large number of insecticides is well known. Many studies support the involvement of cytochrome P-450-dependent monooxygenases (P450) in the development of resistance to pyrethroids, neonicotinoids, carbamates, and organophosphates among insects. In this paper, the monooxygenase activity and expression level of CYP6D1 were studied for the first time in a chlorfenapyr-resistant strain of house fly. Our studies demonstrated that P450 activity in adults of the susceptible strain (Lab TY) and chlorfenapyr-resistant strain (ChlA) was 1.56-4.05-fold higher than that in larvae. In females of the Lab TY and ChlA strains, this activity was 1.53- and 1.57-fold higher, respectively ( < 0.05), than that in males, and in contrast, the expression level of CYP6D1 was 21- and 8-fold lower, respectively. The monooxygenase activity did not vary between larvae of the susceptible strain Lab TY and the chlorfenapyr-resistant strain ChlA. Activity in females and males of the ChlA strain exceeded that in the Lab TY strain specimens by 1.54 ( = 0.08) and 1.83 ( < 0.05) times, respectively, with the same level of CYP6D1 expression. PCR-RFLP analysis revealed a previously undescribed mutation in the promoter region of the CYP6D1 gene in adults of the Lab TY and ChlA strains, and it did not affect the gene expression level. The obtained results show that the development of resistance to chlorfenapyr in is accompanied by an increase in P450-monooxygenase activity without changes in CYP6D1 expression.

摘要

家蝇(Musca domestica L.)是全球兽医和医学领域最重要的常见昆虫之一;其对大量杀虫剂产生抗性的能力是众所周知的。许多研究支持细胞色素P - 450依赖性单加氧酶(P450)参与昆虫对拟除虫菊酯、新烟碱类、氨基甲酸酯类和有机磷酸酯类杀虫剂的抗性发展。在本文中,首次在家蝇氯虫苯甲酰胺抗性品系中研究了CYP6D1的单加氧酶活性和表达水平。我们的研究表明,敏感品系(Lab TY)和氯虫苯甲酰胺抗性品系(ChlA)成虫中的P450活性比幼虫高1.56 - 4.05倍。在Lab TY和ChlA品系的雌性中,该活性分别比雄性高1.53倍和1.57倍(P < 0.05),相反,CYP6D1的表达水平分别低21倍和8倍。敏感品系Lab TY的幼虫和氯虫苯甲酰胺抗性品系ChlA的幼虫之间单加氧酶活性没有差异。ChlA品系雌性和雄性的活性分别比Lab TY品系样本高1.54倍(P = 0.08)和1.83倍(P < 0.05),而CYP6D1表达水平相同。PCR - RFLP分析揭示了Lab TY和ChlA品系成虫中CYP6D1基因启动子区域存在一个先前未描述的突变,且该突变不影响基因表达水平。所得结果表明,家蝇对氯虫苯甲酰胺抗性的发展伴随着P450 - 单加氧酶活性的增加,而CYP6D1表达没有变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6505/11203901/9f750ca151ae/insects-15-00461-g001.jpg

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