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首页> 外文期刊>BMC Evolutionary Biology >Fine-scale temporal and spatial variation of taxon and clonal structure in the Daphnia longispina hybrid complex in heterogeneous environments
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Fine-scale temporal and spatial variation of taxon and clonal structure in the Daphnia longispina hybrid complex in heterogeneous environments

机译:异源环境中水蚤(Daphnia longispina)杂合体中分类单元和克隆结构的精细时空变化

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Background Cyclical parthenogenetic water fleas of the genus Daphnia have become a prominent model organism in ecology and evolution. In the past, analyses of their population structure have been limited by the prevailing use of allozyme markers, which in general do not allow for the distinction of individual clones. In this study, we used 10 microsatellite markers to track changes in the taxonomic and clonal composition of Daphnia populations, and traced the abundance of the most common clones in two European reservoirs. One of the localities was inhabited by a single species of the Daphnia longispina complex (D. galeata), the other by two parental species (D. galeata and D. longispina) and their interspecific hybrids. The study took place during the transition from summer stratification to autumn mixing, representing a period of major environmental change within lake habitats. Results In both reservoirs, we observed temporal (generation-to-generation) and spatial (along the heterogeneous reservoir environment) changes in Daphnia community structure. In the single-species reservoir, the clonal diversity of D. galeata increased with time, as a few dominant clones were replaced by a higher number of less common clones. A loss in selective advantage for the dominant clones may have been due to gradual changes in the environment, or due to selection acting in a negative frequency-dependent manner. In the multispecies reservoir, there were no apparent temporal trends in clonal diversity but we observed significantly lower clonal diversity in the interspecific hybrids than in the coexisting parental species, supporting the existence of reproductive barriers between the parental genomes. Conclusions Our study, tracing clonal lineages of Daphnia in time and space by the fine-resolution markers, contributes to the understanding of how clonal reproduction impacts community structure in cyclically parthenogenetic organisms.
机译:背景技术水蚤属的周期性孤雌生殖水蚤已成为生态学和进化中的重要模式生物。在过去,对它们的种群结构的分析一直受到普遍使用同工酶标记的限制,这通常不允许区分单个克隆。在这项研究中,我们使用10个微卫星标记来追踪水蚤种群的分类和克隆组成的变化,并追踪两个欧洲水库中最常见的克隆的丰度。其中一个地方居住着一种水蚤(Daphnia longispina)复合体(D. galeata),另一种居住在两个亲本物种(D. galeata和D. longispina)及其种间杂种中。该研究是在从夏季分层到秋季混合的过渡期间进行的,代表了湖泊栖息地内主要环境变化的时期。结果在两个水库中,我们观察到水蚤群落结构的时间(世代间)和空间(沿非均质水库环境)变化。在单一物种的水库中,D。galeata的克隆多样性随时间增加,因为少数优势克隆被更多数量的不常见克隆取代。优势克隆选择优势的丧失可能是由于环境的逐渐变化,或者由于选择以负频率依赖性的方式起作用。在多物种水库中,克隆多样性没有明显的时间趋势,但我们观察到种间杂种的克隆多样性明显低于共存的亲本物种,这支持了亲本基因组之间存在繁殖障碍。结论我们的研究通过精细分辨率的标记追踪时空的水蚤的克隆世系,有助于了解克隆繁殖如何影响周期性孤雌生殖生物的群落结构。

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