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Microsatellites reveal substantial among-population genetic differentiation and strong inbreeding in the relict fern Dryopteris aemula

机译:微卫星揭示了lic蕨Dryopteris aemula中大量种群间的遗传分化和强势近交

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摘要

Background and Aims A previous study detected no allozyme diversity in Iberian populations of the buckler-fern Dryopteris aemula. The use of a more sensitive marker, such as microsatellites, was thus needed to reveal the genetic diversity, breeding system and spatial genetic structure of this species in natural populations. Methods Eight microsatellite loci for D. aemula were developed and their cross-amplification with other ferns was tested. Five polymorphic loci were used to characterize the amount and distribution of genetic diversity of D. aemula in three populations from the Iberian Peninsula and one population from the Azores. Key Results Most microsatellite markers developed were transferable to taxa close to D. aemula. Overall genetic variation was low (HT = 0·447), but was higher in the Azorean population than in the Iberian populations of this species. Among-population genetic differentiation was high (FST = 0·520). All loci strongly departed from Hardy-Weinberg equilibrium. In the population where genetic structure was studied, no spatial autocorrelation was found in any distance class. Conclusions The higher genetic diversity observed in the Azorean population studied suggested a possible refugium in this region from which mainland Europe has been recolonized after the Pleistocene glaciations. High among-population genetic differentiation indicated restricted gene flow (i.e. lack of spore exchange) across the highly fragmented area occupied by D. aemula. The deviations from Hardy-Weinberg equilibrium reflected strong inbreeding in D. aemula, a trait rarely observed in homosporous ferns. The absence of spatial genetic structure indicated effective spore dispersal over short distances. Additionally, the cross-amplification of some D. aemula microsatellites makes them suitable for use in other Dryopteris taxa
机译:背景和目的先前的研究未发现在伊比利亚的the蕨Dryopteris aemula种群中存在同工酶多样性。因此,需要使用更敏感的标记,例如微卫星,以揭示自然种群中该物种的遗传多样性,繁殖系统和空间遗传结构。方法研制了八种小球藻微卫星基因座,并与其他蕨类植物进行了交叉扩增。在伊比利亚半岛的三个种群和亚速尔群岛的一个种群中,使用五个多态性位点表征了D. aemula遗传多样性的数量和分布。关键结果大多数开发的微卫星标记都可以转移到接近D. aemula的分类单元上。总体遗传变异较低(HT = 0·447),但在该亚速尔群岛种群中比该物种的伊比利亚种群更高。人群之间的遗传分化很高(FST = 0·520)。所有的基因座都强烈地偏离了哈代-温伯格平衡。在研究遗传结构的人群中,在任何距离类别中均未发现空间自相关。结论在所研究的亚速尔群岛人口中观察到的较高的遗传多样性表明,在该区域可能存在避难所,在更新世冰期之后欧洲大陆已被重新定殖。种群间的高遗传分化表明,在由D. aemula占据的高度片段化的区域中,基因流受到限制(即缺乏孢子交换)。与Hardy-Weinberg平衡的偏离反映了D. aemula的近亲繁殖,这是在同孔蕨中很少观察到的特征。空间遗传结构的缺乏表明孢子在短距离内有效分散。此外,一些D. aemula微卫星的交叉扩增使其适用于其他Dryopteris分类群

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