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首页> 外文期刊>The Journal of Heredity >Extensive long-distance pollen dispersal in a fragmented landscape maintains genetic diversity in white spruce
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Extensive long-distance pollen dispersal in a fragmented landscape maintains genetic diversity in white spruce

机译:在分散的景观中广泛的长距离花粉散布维持了白云杉的遗传多样性

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摘要

Conifers are among the most genetically diverse plants but show the lowest levels of genetic differentiation, even among geographically distant populations. High gene flow among populations may be one of the most important factors in maintaining these genetic patterns. Here, we provide empirical evidence for extensive pollen-mediated gene dispersal between natural stands of a widespread northern temperate/boreal conifer, Picea glauca. We used 6 polymorphic allozyme loci to quantify the proportion of seeds sired by pollen originating from different sources in a landscape fragmented by agriculture in North Central Ontario, Canada. In 7 stands, a small proportion of seeds were sired by self-pollen or neighboring trees but 87.1% (+/- 1.7% standard error [SE]) of seeds were sired by pollen from at least 250 to 3000 m away. In 4 single isolated trees, self-fertilization rates were low and more than 96% (+/- 1.3% SE) of seeds were sired by immigrant pollen. The average minimum pollen dispersal distance in outcrossed matings was 619 m. These results provide strong evidence that extensive long-distance pollen dispersal plays a primary role in maintaining low genetic differentiation among natural populations of P. glauca and helps maintain genetic diversity and minimize inbreeding in small stands in a fragmented landscape.
机译:针叶树是遗传多样性最高的植物之一,但即使在地理上相距遥远的种群中,也显示出最低的遗传分化水平。种群之间的高基因流量可能是维持这些遗传模式的最重要因素之一。在这里,我们为广泛的北部温带/北方针叶树(Picea glauca)的天然林分之间的花粉介导的基因扩散提供经验证据。我们使用了6个多态同工酶基因座来定量分析加拿大安大略省中北部农业分割的景观中来自不同来源的花粉对种子的诱捕比例。在7个林分中,一小部分种子被自花粉或附近的树木包围,而87.1%(标准误差[+/-]标准误差[SE])的种子在至少250至3000 m的距离内被花粉包围。在4棵单独的树木中,自体受精率很低,并且超过96%(+/- 1.3%SE)的种子被移民花粉所诱捕。异交交配的平均最小花粉散布距离为619 m。这些结果提供了有力的证据,表明广泛的远距离花粉扩散在维持青冈自然种群间低遗传分化中起主要作用,并有助于保持遗传多样性并使在零散景观中的小林分中的近交繁殖最小化。

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