溴氰菊酯选择驱动埃及伊蚊解毒、免疫和角质层基因的转录组变化。

IF 2.6 4区 医学 Q2 INFECTIOUS DISEASES
Yamili Contreras-Perera, Lucy Mackenzie-Impoinvil, Dieunel Derilus, Audrey Lenhart, Iram P Rodriguez-Sanchez, Pablo Manrique-Saide, Adriana E Flores
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引用次数: 0

摘要

埃及伊蚊传播的疾病,如登革热、基孔肯雅热和寨卡病毒,在全球迅速蔓延,使这种蚊子成为病媒控制计划的关键目标。这些规划严重依赖杀虫剂的使用,导致杀虫剂耐药性的广泛出现。了解耐药性的分子基础对于制定有效的管理策略至关重要。在这项研究中,我们采用全转录组(RNA-seq)方法分析了三种Ae的基因表达。来自墨西哥的埃及伊蚊种群用溴氰菊酯进行了四代实验室选择。选择后,几个细胞色素P450基因(CYP6AG4、CYP6M5、CYP307A1)和一个几丁质结合的周营养蛋白样基因(Ae-Aper50)显著过表达,支持解毒和中肠保护的作用。我们还观察到,相对于基线种群,在溴氰菊酯选择组中,角质层蛋白基因一致下调,这表明它们参与基线耐受性,而不是诱导抗性。此外,免疫和应激相关基因的过度表达,包括RNA解旋酶MOV-10,表明杀虫剂选择可能引发更广泛的生理反应。这些发现强调了与伊蚊耐药发展相关的复杂的多途径转录组变化。蚊。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deltamethrin Selection Drives Transcriptomic Changes in Detoxification, Immune, and Cuticle Genes in Aedes aegypti.

The rapid global expansion of Aedes aegypti-borne diseases such as dengue, chikungunya, and Zika has positioned this mosquito as a key target for vector control programs. These programs rely heavily on insecticide use, leading to the widespread emergence of insecticide resistance. Understanding the molecular basis of resistance is essential for developing effective management strategies. In this study, we employed a whole-transcriptome (RNA-seq) approach to analyze gene expression in three Ae. aegypti populations from Mexico that underwent four generations of laboratory selection with deltamethrin. Several cytochrome P450 genes (CYP6AG4, CYP6M5, CYP307A1) and a chitin-binding peritrophin-like gene (Ae-Aper50) were significantly overexpressed following selection, supporting roles for both detoxification and midgut protection. We also observed a consistent downregulation of cuticular protein genes in deltamethrin-selected groups relative to the baseline populations, suggesting their involvement in baseline tolerance rather than induced resistance. Additionally, the overexpression of immune- and stress-related genes, including the RNA helicase MOV-10, indicates that insecticide selection may trigger broader physiological responses. These findings highlight complex, multi-pathway transcriptomic changes associated with resistance development in Ae. aegypti.

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来源期刊
Tropical Medicine and Infectious Disease
Tropical Medicine and Infectious Disease Medicine-Public Health, Environmental and Occupational Health
CiteScore
3.90
自引率
10.30%
发文量
353
审稿时长
11 weeks
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