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Clonal diversity, clonal persistence and rapid taxon replacement in natural populations of species and hybrids of the Daphnia longispina complex

机译:水蚤(Daphnia longispina)复合体物种和杂种的自然种群中的克隆多样性,克隆持久性和快速分类群替换

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摘要

Hybridization is common among cyclical parthenogens, especially in zooplankton species assemblages of the genus Daphnia. To explore hybridization dynamics and the extent of clonal diversity in the Daphnia longispina complex, we analysed population structure in eight permanent lakes. Based on 15 microsatellite loci, three major taxonomic units emerged: two species, D. galeata and D. longispina and their F1 hybrids, supported by factorial correspondence analysis and two Bayesian methods. At the same time, the detection of backcross classes differed between methods. Mean clonal diversity was lowest in the F1 hybrids, as expected from the high rate of asexual reproduction. Within taxa, replicated genotypes were of clonal origin, but clonal lineages persisted in subsequent years in only one of three resampled lakes. In another lake, the taxon composition changed from being dominated by hybrids to complete dominance by one parental taxon. Such a year-to-year taxon replacement has not been reported for the D. longispina complex before. Our data on this hybrid complex illustrate that high-resolution genotyping is essential for the understanding of ecological and evolutionary outcomes of hybridization in partially clonal taxa.
机译:杂交在周期性孤雌激素中很常见,尤其是在水蚤属的浮游动物物种组合中。为了探索水蚤复杂的杂交动力学和克隆多样性的程度,我们分析了八个永久湖泊的种群结构。在15个微卫星基因座的基础上,出现了三个主要的分类单元:D。galeata和D. longispina及其F1杂种,这两个种类得到了因子对应分析和两种贝叶斯方法的支持。同时,回交类的检测在方法之间有所不同。 F1杂种的平均克隆多样性最低,这是无性繁殖率很高的结果。在分类单元内,复制的基因型是克隆起源的,但是克隆谱系在随后的几年中仅在三个重新采样的湖泊之一中仍然存在。在另一个湖泊中,分类单元的组成从被杂种控制到由一个父母分类单元完全控制。以前没有报道过这种D.longispina复合体逐年替换类群的情况。我们关于该杂种复合体的数据表明,高分辨率基因分型对于理解部分克隆类群中杂交的生态和进化结果至关重要。

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