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ARE POPULATIONS ISLANDS - ANALYSIS OF CHLOROPLAST DNA VARIATION IN AQUILEGIA

机译:是人口孤岛-水杉叶绿体DNA变异分析

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The degree to which conspecific populations are interconnected via ongoing gene flow remains an important focus of evolutionary biology. One major difficulty in distinguishing ongoing gene flow from historical subdivision is that either process can generate similar estimates of apparent gene flow. Thus, gene flow estimates themselves are insufficient to distinguish between these alternatives. However, genetic data coupled with additional information about demography and distribution do allow a distinction to be made. Here we address the specific question, does gene flow link populations of Aquilegia? In a survey of a 525 B.P. chloroplast DNA fragment sampled from 251 individual plants from 18 populations of three taxa, five haplotypes were identified. No significant relationship between geographic distance and apparent gene flow between population pairs existed. Further, the estimated level of gene flow was entirely compatible with a historical subdivision of Aquilegia populations during the late Pleistocene or early Holocene. Therefore, these patterns of variation are due not to ongoing gene flow, but rather to historical association among populations. Thus Aquilegia populations may be considered as distinct evolutionary entities with regard to seed-mediated processes. As a result, comparative analysis of ecological traits undergoing potentially rapid evolution (e.g., life histories, mating systems, inbreeding depression) should be possible in these taxa. [References: 53]
机译:通过持续的基因流动使同种种群相互联系的程度仍然是进化生物学的重要重点。区分进行中的基因流与历史细分的一个主要困难是,任一过程都可以产生相似的表观基因流估计。因此,基因流量估算本身不足以区分这些替代方案。但是,遗传数据加上有关人口统计学和分布的其他信息确实可以区分。在这里,我们解决一个特定的问题,基因流是否链接了阿奎莱吉亚种群?在对公元前525年的调查中从三个分类单元的18个种群的251株个体植物中取样的叶绿体DNA片段,鉴定出五种单倍型。地理距离与人口对之间的表观基因流之间不存在显着关系。此外,估计的基因流水平与更新世晚期或全新世早期的Aquilegia种群的历史细分完全兼容。因此,这些变异模式不是由于持续的基因流动,而是由于种群之间的历史关联。因此,就种子介导的过程而言,A羽种群可被视为独特的进化实体。结果,在这些分类单元中应该有可能对可能正在快速进化的生态特征(例如生活史,交配系统,近交衰退)进行比较分析。 [参考:53]

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