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Shared and nonshared genomic divergence in parallel ecotypes of Littorina saxatilis at a local scale

机译:本地小鳞蜥的平行生态型中的共享和非共享基因组差异

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Parallel speciation occurs when selection drives repeated, independent adaptive divergence that reduces gene flow between ecotypes. Classical examples show parallel speciation originating from shared genomic variation, but this does not seem to be the case in the rough periwinkle (Littorina saxatilis) that has evolved considerable phenotypic diversity across Europe, including several distinct ecotypes. Small wave' ecotype snails inhabit exposed rocks and experience strong wave action, while thick-shelled, crab' ecotype snails are larger and experience crab predation on less exposed shores. Crab and wave ecotypes appear to have arisen in parallel, and recent evidence suggests only marginal sharing of molecular variation linked to evolution of similar ecotypes in different parts of Europe. However, the extent of genomic sharing is expected to increase with gene flow and more recent common ancestry. To test this, we used de novo RAD-sequencing to quantify the extent of shared genomic divergence associated with phenotypic similarities amongst ecotype pairs on three close islands (<10km distance) connected by weak gene flow (Nm similar to 0.03) and with recent common ancestry (<10000years). After accounting for technical issues, including a large proportion of null alleles due to a large effective population size, we found similar to 8-28% of positive outliers were shared between two islands and similar to 2-9% were shared amongst all three islands. This low level of sharing suggests that parallel phenotypic divergence in this system is not matched by shared genomic divergence despite a high probability of gene flow and standing genetic variation.
机译:当选择驱动重复的,独立的适应性分歧而减少生态型之间的基因流动时,就会发生平行物种形成。古典的例子表明平行的物种起源于共同的基因组变异,但是在欧洲各地已发展出可观的表型多样性(包括几种不同的生态型)的粗糙的长春花(Littorina saxatilis)似乎并非如此。小浪的生态型蜗牛栖息在裸露的岩石中并经历强烈的波浪作用,而厚壳的螃蟹的生态型蜗牛较大,在裸露的海岸上捕食螃蟹。螃蟹和海浪生态型似乎是同时出现的,最近的证据表明,与欧洲不同地区类似生态型的演变有关的分子变异只有很少的共享。但是,基因组共享的程度预计会随着基因流和最近的共同祖先而增加。为了测试这一点,我们使用了从头进行RAD测序来量化与弱基因流(Nm近似于0.03)相连的三个近岛(<10km距离)上的生态型对之间表型相似性相关的共有基因组差异程度。祖先(<10000年)。在考虑了技术问题之后,包括由于有效种群规模较大而导致的无效等位基因的比例很高,我们发现在两个岛屿之间共享了大约8-28%的阳性离群值,在三个岛屿之间共享了大约2-9%的正离群值。这种低水平的共享表明,尽管系统中存在很高的基因流动和遗传变异的可能性,但该系统中的平行表型差异并没有共享的基因组差异所匹配。

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