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选择的异质性与抗性的进化。

Heterogeneity of selection and the evolution of resistance.

出版信息

Trends Ecol Evol. 2013 Feb;28(2):110-8. doi: 10.1016/j.tree.2012.09.001. Epub 2012 Oct 3.

Abstract

The evolution of resistance to pesticides and drugs by pests and pathogens is a textbook example of adaptation to environmental changes and a major issue in both public health and agronomy. Surprisingly, there is little consensus on how to combine selection pressures (i.e., molecules used in the treatment of pests or pathogens) over space and time to delay or prevent this evolutionary process. By reviewing theoretical models and experimental studies, we show that higher levels of heterogeneity of selection are associated with longer-term sustainability of pest or pathogen control. The combination of molecules usually outcompetes other resistance management strategies, such as Responsive alternation, Periodic application, or Mosaic, because it ensures 'multiple intragenerational killing'. A strategic deployment over space and/or time of several combinations can ensure 'multiple intergenerational killing', further delaying the evolution of resistance.

摘要

抗药性和抗药性的进化是适应环境变化的典型例子,也是公共卫生和农学领域的主要问题。令人惊讶的是,对于如何在空间和时间上结合选择压力(即用于治疗害虫或病原体的分子)来延缓或防止这种进化过程,人们几乎没有共识。通过回顾理论模型和实验研究,我们表明,选择压力的异质性水平越高,害虫或病原体控制的可持续性就越长。分子的组合通常比其他抗药性管理策略(如响应交替、周期性应用或镶嵌)更具竞争力,因为它确保了“多代内杀伤”。在空间和/或时间上战略性地部署几种组合可以确保“多代间杀伤”,从而进一步延缓抗药性的进化。

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