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寻找埃及伊蚊对拟除虫菊酯代谢抗性的基因组标记:一种整合的新一代测序方法。

In the hunt for genomic markers of metabolic resistance to pyrethroids in the mosquito Aedes aegypti: An integrated next-generation sequencing approach.

作者信息

Faucon Frederic, Gaude Thierry, Dusfour Isabelle, Navratil Vincent, Corbel Vincent, Juntarajumnong Waraporn, Girod Romain, Poupardin Rodolphe, Boyer Frederic, Reynaud Stephane, David Jean-Philippe

机构信息

Laboratoire d'Ecologie Alpine (LECA), CNRS, UMR 5553, 2233 rue de la piscine Grenoble, France.

Université Grenoble-Alpes, France.

出版信息

PLoS Negl Trop Dis. 2017 Apr 5;11(4):e0005526. doi: 10.1371/journal.pntd.0005526. eCollection 2017 Apr.

Abstract

BACKGROUND

The capacity of Aedes mosquitoes to resist chemical insecticides threatens the control of major arbovirus diseases worldwide. Until alternative control tools are widely deployed, monitoring insecticide resistance levels and identifying resistance mechanisms in field mosquito populations is crucial for implementing appropriate management strategies. Metabolic resistance to pyrethroids is common in Aedes aegypti but the monitoring of the dynamics of resistant alleles is impeded by the lack of robust genomic markers.

METHODOLOGY/PRINCIPAL FINDINGS: In an attempt to identify the genomic bases of metabolic resistance to deltamethrin, multiple resistant and susceptible populations originating from various continents were compared using both RNA-seq and a targeted DNA-seq approach focused on the upstream regions of detoxification genes. Multiple detoxification enzymes were over transcribed in resistant populations, frequently associated with an increase in their gene copy number. Targeted sequencing identified potential promoter variations associated with their over transcription. Non-synonymous variations affecting detoxification enzymes were also identified in resistant populations.

CONCLUSION /SIGNIFICANCE: This study not only confirmed the role of gene copy number variations as a frequent cause of the over expression of detoxification enzymes associated with insecticide resistance in Aedes aegypti but also identified novel genomic resistance markers potentially associated with their cis-regulation and modifications of their protein structure conformation. As for gene transcription data, polymorphism patterns were frequently conserved within regions but differed among continents confirming the selection of different resistance factors worldwide. Overall, this study paves the way of the identification of a comprehensive set of genomic markers for monitoring the spatio-temporal dynamics of the variety of insecticide resistance mechanisms in Aedes aegypti.

摘要

背景

埃及伊蚊对化学杀虫剂产生抗性的能力威胁着全球主要虫媒病毒疾病的防控。在广泛部署替代控制工具之前,监测野外蚊虫种群的杀虫剂抗性水平并确定抗性机制对于实施适当的管理策略至关重要。埃及伊蚊对拟除虫菊酯的代谢抗性很常见,但由于缺乏可靠的基因组标记,阻碍了对抗性等位基因动态变化的监测。

方法/主要发现:为了确定对溴氰菊酯代谢抗性的基因组基础,我们使用RNA测序和靶向DNA测序方法,聚焦于解毒基因的上游区域,比较了来自各大洲的多个抗性和敏感种群。多个解毒酶在抗性种群中过度转录,这通常与它们基因拷贝数的增加有关。靶向测序确定了与其过度转录相关的潜在启动子变异。在抗性种群中还发现了影响解毒酶的非同义变异。

结论/意义:本研究不仅证实了基因拷贝数变异是埃及伊蚊中与杀虫剂抗性相关的解毒酶过度表达的常见原因,还鉴定了可能与其顺式调控和蛋白质结构构象修饰相关的新型基因组抗性标记。至于基因转录数据,多态性模式在区域内通常是保守的,但在各大洲之间存在差异,这证实了全球范围内不同抗性因子的选择。总体而言,本研究为鉴定一套全面的基因组标记铺平了道路,用于监测埃及伊蚊中各种杀虫剂抗性机制的时空动态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/deed/5393893/320c30e5ab12/pntd.0005526.g001.jpg

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