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Determining Impediments to Gene Flow in a Natural Population of Cornus florida L. Cornaceae, Using Integrative Landscape Genetic Techniques

机译:利用综合景观遗传技术确定山茱自然种群中基因流动的障碍

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摘要

This study examined the impact intervening environment has on gene flow in the insect pollinated understory tree, Cornus florida L., by combining GIS and landscape genetic techniques (Least Cost Path Analysis, Circuit Theory, and Conditional Genetic Distance). Traditional population genetic analysis indicated pair-wise relatedness was significantly correlated to distance (Pearson; r = -0.312, P u3c 0.001) suggesting a spatial component to offspring relatedness. Dispersal throughout the study site was non-random, exhibiting a high degree of pollen pool structure due to restricted gene flow (Two-Generation Analysis; Φft = 0.161, P = 0.001). Forest structure was quantified in GIS layers representing coniferous canopies, mixed hardwood canopies, C. florida canopies, open understory (roads), and open understory/canopy due to tree removal. Of these layers, landscape isolation for the roads layer provided the best-fit model for describing genetic differentiation among sampled pollen pools (Mantel; r = 0.542, P = 0.001). These data also suggest that improved biological inferences can be gained by examining a range of landscape isolation models.
机译:这项研究通过结合GIS和景观遗传技术(最低成本路径分析,回路理论和条件遗传距离),研究了干预环境对昆虫授粉的林下树Cornus florida L.基因流的影响。传统的群体遗传学分析表明,成对的相关性与距离显着相关(Pearson; r = -0.312,P u3c 0.001),暗示了后代相关性的空间成分。整个研究部位的散布是非随机的,由于受限制的基因流而表现出高度的花粉池结构(两代分析;Φft= 0.161,P = 0.001)。在GIS图层中对森林结构进行了量化,这些图层代表了针叶林冠,混合硬木林冠,佛罗里达梭菌林冠,开阔的林下(道路)和开阔的林下/由于树木被去除的林冠。在这些图层中,道路图层的景观隔离为描述采样的花粉池之间的遗传分化提供了最合适的模型(Mantel; r = 0.542,P = 0.001)。这些数据还表明,通过检查一系列景观隔离模型可以改善生物学推断。

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    Meadows Crystal;

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  • 年度 2011
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