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A comparative analysis of fine-scale genetic structure in three closely related syntopic species of the grasshopper genus Calliptamus

机译:蝗属Calliptamus的三个密切相关的同属物种的精细尺度遗传结构的比较分析

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摘要

Landscape analysis and genetics can allow a better understanding of grasshoppers for which ecology is not very well known. We analysed landscape changes between 1990 and 2006 at two areas from southern France where three grasshopper species (Calliptamus italicus (L., 1758), Calliptamus wattenwylianus Pantel, 1896, and Calliptamus barbarus (Costa, 1836)) occur. We then applied microsatellite markers to the study of 1200 georeferenced samples collected over both areas. We used a recent Bayesian clustering method with correlated allele frequencies to detect weak population genetic structure. We found evidence of breaks in gene flow only in C. wattenwylianus, thought to be sedentary relative to its congenerics. By using different allele frequency models and prior information to different levels of genetic differentiation for our six real data sets, our study also informs on the ability of the newly available Bayesian clustering methods model to detect weak genetic structure in natural field populations.
机译:景观分析和遗传学可以让人们更好地了解生态学不是很了解的蚱hopper。我们分析了1990年至2006年之间法国南部两个地区的景观变化,其中出现了三种蚱hopper物种(Calliptamus italicus(L.,1758),Calliptamus wattenwylianus Pantel,1896和Calliptamus barbarus(Costa,1836))。然后,我们将微卫星标记应用于在两个地区收集的1200个地理参考样本的研究。我们使用了具有相关等位基因频率的最新贝叶斯聚类方法来检测弱群体遗传结构。我们发现只有在C. wattenwylianus中发现了基因流动中断的证据,而C. wattenwylianus被认为相对于其同类是久坐的。通过为我们的六个真实数据集使用不同的等位基因频率模型和先验信息来进行不同程度的遗传分化,我们的研究还提供了新的贝叶斯聚类方法模型检测自然田间种群弱遗传结构的能力。

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