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Population genetics strategies to characterize long-distance dispersal of insects

机译:表征昆虫远距离扩散的种群遗传学策略

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摘要

Population genetics strategies offer an alternative and powerful approach for obtaining information about long-distance movement, and have been widely used for examining patterns and magnitude of insect dispersal over geographic and temporal scales. Such strategies are based on the principle that genetic divergence between local populations reflects the interplay between genetic drift and gene flow, and thus can function as an indicator of dispersal capacity. Relatively new approaches for inferring population history are widely applicable for documenting introduction routes of invasive or quarantine species. These approaches are based on genetic variability calculated from changes in gene frequency of subpopulations, measured using molecular genetic markers. Inferences from population genetics can supplement and corroborate conventional observational approaches for characterizing insect dispersal and have provided important clues to many questions raised in the field of behavior and ecology of insects. Here, we summarize our work on the boll weevil as a case study to illustrate the kinds of information on dispersal capacity and dispersal patterns that can be obtained from population genetics techniques that would be difficult or impossible to acquire in other ways. Then we provide examples of how the molecular markers and population genetics tools have been applied to answer immediate questions of relevance to eradication program managers. Though the latter are idiosyncratic to this particular pest, they demonstrate the kinds and range of problems that can be addressed in other systems through application of population genetics strategies.
机译:种群遗传学策略为获取有关长距离运动的信息提供了另一种有效的方法,并已广泛用于检查地理和时间尺度上昆虫传播的模式和程度。此类策略基于以下原则:本地种群之间的遗传差异反映了遗传漂移和基因流之间的相互作用,因此可以作为分散能力的指标。推断种群历史的相对新方法可广泛用于记录入侵或隔离物种的引入途径。这些方法基于通过使用分子遗传标记测量的亚群基因频率变化计算出的遗传变异性。种群遗传学的推论可以补充和证实表征昆虫传播的常规观察方法,并为昆虫行为和生态学领域提出的许多问题提供了重要线索。在这里,我们以棉铃象鼻虫为例进行总结,以举例说明可以从种群遗传学技术获得的分散能力和分散模式的信息,而这些信息很难或不可能以其他方式获得。然后,我们提供了一些示例,说明如何使用分子标记和种群遗传学工具回答与消灭计划管理者相关的直接问题。尽管后者对这种特定害虫是特质的,但它们证明了可以通过应用种群遗传学策略在其他系统中解决的问题的种类和范围。

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