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Mating Patterns of Black Oak Quercus velutina (Fagaceae) in a Missouri Oak-Hickory Forest

机译:密苏里州橡木山胡桃木森林中黑栎栎(Fagaceae)的交配模式

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摘要

Wind-pollinated forest trees usually have high outcrossing rates, but allogamy does not necessarily translate into high pollen movement. The goal of this study was to determine the outcrossing rates, pollen pool genetic structure, and the size of the effective pollination neighborhood in a population of black oak, Quercus velutina, in a Missouri oak-hickory forest. Based on 6 allozyme loci, 12 maternal trees, and 439 progenies sampled along a transect of 1300 m, we found complete outcrossing (tm = 1.000, P < 0.001) and small amounts of biparental inbreeding. Using a TwoGener analysis of the pollen gene pool, we found significant structure across maternal plants (ΦFT = 0.078, P < 0.001), which when corrected for adult inbreeding translates into ΦFT = 0.066 that corresponds to an effective number of pollen donors of 7.5 individuals. Assuming a bivariate normal distribution and an adult density of 16.25 trees ha−1, we estimated that the effective pollination neighborhood area had a radius of 41.9 m. Even assuming that our estimates may be conservative, these findings join a growing body of evidence that suggest that the local neighborhood of wind-pollinated forest tree populations may be relatively small creating opportunities for local selection and genetic drift.
机译:风铃授粉的林木通常具有较高的异交率,但同花异体不一定转化为高花粉运动。这项研究的目的是确定密苏里州橡树山核桃林中黑栎(Quercus velutina)种群的异交率,花粉池遗传结构和有效授粉邻域的大小。根据沿1300 m样线采样的6个同工酶基因座,12个母本树和439个子代,我们发现完全异交(t m = 1.000,P <0.001)和少量的双亲近交。通过对花粉基因库进行的TwoGener分析,我们发现整个母本植物的显着结构(Φ FT = 0.078,P <0.001),经过成年近交校正后,该结构转化为Φ FT = 0.066,相当于有效的7.5个花粉供体数量。假设二元正态分布和成年密度为16.25棵ha -1 ,我们估计有效授粉邻域的半径为41.9 m。即使假设我们的估计值是保守的,这些发现也结合了越来越多的证据,表明风传粉林树种群的本地社区可能相对较小,为本地选择和遗传漂移创造了机会。

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  • 来源
    《Journal of Heredity》 |2006年第5期|451-455|共5页
  • 作者单位

    From the Laboratoire d'Ecologie Systématique et Evolution Bat 360 Université Paris 11 Sud 91405 Orsay Cedex France (Fernández-Manjarrés);

    the National Human Genome Research Institute National Institute of Health Bethesda MD 20892 (Idol);

    and the Department of Ecology and Evolutionary Biology The University of California at Los Angeles CA 90095-1606 (Sork);

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