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Fine-scale genetic structure of life history stages in the food-deceptive orchid Orchis purpurea

机译:摄食性兰花Orchis purpurea的生活史阶段的精细规模遗传结构

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In natural plant populations, fine-scale spatial genetic structure can result from limited gene flow, selection pressures or historical events, but the role of each factor is in general hard to discern. One way to investigate the origination of spatial genetic structure within a plant population consists of comparing spatial genetic structure among different life history stages. In this study, spatial genetic structure of the food-deceptive orchid Orchis purpurea was determined across life history stages in two populations that were regenerating after many years of population decline. Based on demographic analyses (2001-2004), we distinguished between recruits and adult plants. For both sites, there was no difference in the proportion of polymorphic loci and expected heterozygosity between life history stages. However, spatial autocorrelation analyses showed that spatial genetic structure increased in magnitude with life history stage. Weak or no spatial genetic structure was observed for recruits, whereas adult plants showed a pattern that is consistent with that found in other species with a predominantly outcrossing mating system. The observed differences between seedlings and adults are probably a consequence of changes in management of the two study sites and associated demographic changes in both populations. Our results illustrate that recurrent population crashes and recovery may strongly affect genetic diversity and fine-scale spatial genetic structure of plant populations.
机译:在天然植物种群中,精细的空间遗传结构可能是由于有限的基因流动,选择压力或历史事件造成的,但通常很难辨别每种因素的作用。研究植物种群中空间遗传结构起源的一种方法是比较不同生命历史阶段之间的空间遗传结构。在这项研究中,在两个种群中,在经历了多年种群减少后正在再生的整个生命史阶段中,确定了具有食物欺骗性的兰花Orchis purpurea的空间遗传结构。根据人口分析(2001-2004年),我们区分了新兵和成年植物。对于这两个位点,生活史阶段之间多态性基因座的比例和预期的杂合性均无差异。然而,空间自相关分析表明,空间遗传结构随生活史阶段而增加。新兵没有观察到弱的或没有空间的遗传结构,而成年植物显示出的模式与其他具有异交交配系统的物种一致。观察到的幼苗和成虫之间的差异可能是两个研究地点的管理发生变化以及两个种群的相关人口变化的结果。我们的结果表明,反复发生的种群崩溃和恢复可能强烈影响植物种群的遗传多样性和精细尺度的空间遗传结构。

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