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Absence of gene flow between diploids and hexaploids of Aster amellus at multiple spatial scales

机译:多个空间尺度上Aster amellus二倍体和六倍体之间基因流的缺乏

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摘要

The potential for gene exchange across ploidy levels has long been recognized, but only a few studies have explored the rate of gene flow among different cytotypes. In addition, most of the existing knowledge comes from contact zones between diploids and tetraploids. The purpose of this paper was to investigate relationships between diploid and hexaploid individuals within the Aster amellus aggregate. A. amellus is known to occur in diploid and hexaploid cytotypes in Europe, with a complex contact zone in central Europe. Patterns of genetic diversity were investigated using seven microsatellite loci at three different spatial scales: (1) in the single known mixed-ploidy population; (2) in populations at the contact zone and (3) in a wider range of populations across Europe. The results show clear separation of the cytotypes at all three spatial scales. In addition, analysis of molecular variance strongly supported a model predicting a single origin of the hexaploids, with no or very limited gene flow between the cytotypes. Some hexaploid individuals found in the mixed-ploidy population, however, fell into the diploid cluster. This could suggest recurrent polyploid formation or occasional cross-pollination between cytotypes; however, there are strong post-zygotic breeding barriers between the two cytotypes, making the latter less plausible. Overall, the results suggest that the cytotypes could represent two cryptic species. Nevertheless, their formal separation is difficult as they cannot be distinguished morphologically, occupy very similar habitat conditions and have largely overlapping distribution ranges. These results show that polyploid complexes must be treated with caution as they can hide biological diversity and can have different adaptation potentials, evolving independently.
机译:人们早已认识到跨倍性水平进行基因交换的潜力,但是只有少数研究探索了不同细胞类型之间基因流动的速率。另外,大多数现有知识来自二倍体和四倍体之间的接触区。本文的目的是研究Aster amellus聚集体中二倍体和六倍体个体之间的关系。在欧洲,已知A. amellus以二倍体和六倍体细胞型发生,在欧洲中部有一个复杂的接触区。使用七个微卫星基因座在三个不同的空间尺度上研究了遗传多样性的模式:(1)在单个已知的混合倍性种群中; (2)接触区的人口,以及(3)欧洲各地的人口。结果显示在所有三个空间尺度上细胞类型的清楚分离。另外,分子变异分析强烈支持了预测六倍体单一来源的模型,在细胞型之间没有或非常有限的基因流动。但是,在混合倍性群体中发现了一些六倍体个体,进入了二倍体簇。这可能暗示了多倍体的反复形成或细胞类型之间偶尔的异花授粉。然而,两种细胞型之间存在强的合子后繁殖障碍,从而使后者的可信度降低。总体而言,结果表明细胞类型可以代表两个隐性物种。然而,它们的正式分离是困难的,因为它们不能在形态上加以区分,占据非常相似的生境条件并且分布范围有很大的重叠。这些结果表明,多倍体复合物必须谨慎处理,因为它们可以掩盖生物多样性并具有不同的适应潜力,并且会独立发展。

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