The Evolution of Pesticide Resistance: A Data-Driven Case Study of Chlorantraniliprole Resistance in Chilo suppressalis and Other Lepidopteran Pests in China

IF 3.5 2区 生物学 Q1 EVOLUTIONARY BIOLOGY
Philip G. Madgwick, Russell Slater, Ricardo Kanitz
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Abstract

Pesticide resistance presents some of the best examples of evolution by natural selection in action. An exceptionally well-documented case from recent years is the evolution of resistance to the diamide chlorantraniliprole in the striped rice stem-borer Chilo suppressalis in China. Prior to the registration of chlorantraniliprole, C. suppressalis had evolved resistance to almost all other available pesticides. Using data from resistance monitoring and laboratory analysis, the quantitative dynamics of chlorantraniliprole resistance evolution in C. suppressalis and other lepidopteran pests in China are collated and analysed. The results reveal the rapid evolution of high levels of chlorantraniliprole resistance in C. suppressalis causing control failure across China, primarily driven by the origin and spread of multiple identified major mutations of the target site. Some of the same mutations also drove the parallel evolution of chlorantraniliprole resistance in other lepidopteran pests. As well as providing an exceptional example of evolution by natural selection in action, the evolution of chlorantraniliprole resistance in C. suppressalis in China also provides a cautionary tale for resistance management.

Abstract Image

农药抗性进化——以中国小蠹蛾和其他鳞翅目害虫氯虫腈抗性为例
农药抗性是自然选择作用下进化的最佳例证。近年来,中国水稻条纹螟(Chilo suppressalis)对氯虫酰胺抗性的演变是一个特别充分记录的案例。在氯虫腈登记之前,抑孢梭菌已经进化出对几乎所有其他可用杀虫剂的抗性。利用抗性监测和实验室分析资料,对中国地区小蠹蛾和其他鳞翅目害虫氯虫腈抗性演变的定量动态进行了整理和分析。研究结果表明,在中国各地,高水平的氯虫腈耐药性的快速进化导致了控制失败,这主要是由目标位点的多个主要突变的起源和传播驱动的。一些相同的突变也推动了其他鳞翅目害虫对氯虫腈抗性的平行进化。除了提供了自然选择作用下进化的一个特殊例子外,中国抑孢杆菌氯虫腈抗性的进化也为抗性管理提供了一个警示故事。
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来源期刊
Evolutionary Applications
Evolutionary Applications 生物-进化生物学
CiteScore
8.50
自引率
7.30%
发文量
175
审稿时长
6 months
期刊介绍: Evolutionary Applications is a fully peer reviewed open access journal. It publishes papers that utilize concepts from evolutionary biology to address biological questions of health, social and economic relevance. Papers are expected to employ evolutionary concepts or methods to make contributions to areas such as (but not limited to): medicine, agriculture, forestry, exploitation and management (fisheries and wildlife), aquaculture, conservation biology, environmental sciences (including climate change and invasion biology), microbiology, and toxicology. All taxonomic groups are covered from microbes, fungi, plants and animals. In order to better serve the community, we also now strongly encourage submissions of papers making use of modern molecular and genetic methods (population and functional genomics, transcriptomics, proteomics, epigenetics, quantitative genetics, association and linkage mapping) to address important questions in any of these disciplines and in an applied evolutionary framework. Theoretical, empirical, synthesis or perspective papers are welcome.
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