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Cryptic genetic variation and adaptation to waterlogging in Caledonian Scots pine Pinus sylvestris L.

机译:加里东苏格兰松(Cinus sylvestris L.)的隐匿遗传变异和对涝渍的适应。

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摘要

Local adaptation occurs as the result of differential selection among populations. Observations made under common environmental conditions may reveal phenotypic differences between populations with an underlying genetic basis; however, exposure to a contrasting novel environment can trigger release of otherwise unobservable (cryptic) genetic variation. We conducted a waterlogging experiment on a common garden trial of Scots pine, (L.), saplings originating from across a steep rainfall gradient in Scotland. A flood treatment was maintained for approximately 1 year; physiological responses were gauged periodically in terms of photochemical capacity as measured via chlorophyll fluorescence. During the treatment, flooded individuals experienced a reduction in photochemical capacity, , this reduction being greater for material originating from drier, eastern sites. Phenotypic variance was increased under flooding, and this increase was notably smaller in saplings originating from western sites where precipitation is substantially greater and waterlogging is more common. We conclude that local adaptation has occurred with respect to waterlogging tolerance and that, under the flooding treatment, the greater increase in variability observed in populations originating from drier sites is likely to reflect a relative absence of past selection. In view of a changing climate, we note that comparatively maladapted populations may possess considerable adaptive potential, due to cryptic genetic variation, that should not be overlooked.
机译:局部适应是人群间选择差异的结果。在常见的环境条件下进行的观察可能揭示出具有潜在遗传基础的种群之间的表型差异。但是,暴露在对比鲜明的新环境中会触发释放其他方式无法观察到的(隐性)遗传变异。我们对苏格兰松(L.)的幼树进行了浸水试验,该幼树源自苏格兰的陡峭降雨梯度。洪水处理维持了大约1年;根据通过叶绿素荧光测量的光化学能力,定期评估生理反应。在治疗期间,被淹的个体的光化学能力下降, ,对于来自较干燥的东部站点的材料,此减少幅度更大。在洪水下,表型差异增加,而来自西部地区的幼树的这种增加明显较小,那里的降水量大得多,而内涝更为普遍。我们得出的结论是,在涝灾耐受性方面已经发生了局部适应,在洪水处理下,来自较干旱地区的种群中观察到的变异性增加更大,这可能反映了过去选择的相对缺乏。鉴于气候变化,我们注意到,由于遗传变异的原因,相对适应不良的人群可能具有相当大的适应潜力,这一点不容忽视。

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