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Network Analysis Identifies Weak And Strong Links In A Metapopulation System

机译:网络分析可确定元人口系统中的弱链接和强链接

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The identification of key populations shaping the structure and connectivity of metapopulation systems is a major challenge in population ecology. The use of molecular markers in the theoretical framework of population genetics has allowed great advances in this field, but the prime question of quantifying the role of each population in the system remains unresolved. Furthermore, the use and interpretation of classical methods are still bounded by the need for a priori information and underlying assumptions that are seldom respected in natural systems. Network theory was applied to map the genetic structure in a metapopulation system by using microsatellite data from populations of a threatened seagrass, Posidonia oceanica, across its whole geographical range. The network approach, free from a priori assumptions and from the usual underlying hypotheses required for the interpretation of classical analyses, allows both the straightforward characterization of hierarchical population structure and the detection of populations acting as hubs critical for relaying gene flow or sustaining the metapopulation system. This development opens perspectives in ecology and evolution in general, particularly in areas such as conservation biology and epidemiology, where targeting specific populations is crucial.
机译:识别影响种群结构的结构和连通性的关键种群是种群生态学的重大挑战。在种群遗传学的理论框架中使用分子标记已经在该领域取得了长足的进步,但是量化每个种群在系统中的作用的主要问题仍然没有解决。此外,古典方法的使用和解释仍然受到自然系统中很少尊重的先验信息和基本假设的限制。利用来自受威胁海草波塞冬大洋洲种群在整个地理范围内的微卫星数据,将网络理论应用于映射遗传种群系统中的遗传结构。网络方法不受先验假设和古典分析解释所需要的通常的基本假设的影响,既可以直接表征分级种群结构,又可以检测作为枢纽的种群,这些种群对于中继基因流或维持中继种群系统至关重要。这一发展为生态学和进化论开辟了广阔的前景,特别是在诸如保护生物学和流行病学等以特定人群为目标的领域。

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