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Complex spatial clonal structure in the macroalgae Fucus radicans with both sexual and asexual recruitment

机译:具有性征和无性征的大型藻类榕的复杂空间克隆结构

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AbstractIn dioecious species with both sexual and asexual reproduction, the spatial distribution of individual clones affects the potential for sexual reproduction and local adaptation. The seaweed Fucus radicans, endemic to the Baltic Sea, has separate sexes, but new attached thalli may also form asexually. We mapped the spatial distribution of clones (multilocus genotypes, MLGs) over macrogeographic (500 km) and microgeographic (100 m) scales in the Baltic Sea to assess the relationship between clonal spatial structure, sexual recruitment, and the potential for natural selection. Sexual recruitment was predominant in some areas, while in others asexual recruitment dominated. Where clones of both sexes were locally intermingled, sexual recruitment was nevertheless low. In some highly clonal populations, the sex ratio was strongly skewed due to dominance of one or a few clones of the same sex. The two largest clones (one female and one male) were distributed over 100–550 km of coast and accompanied by small and local MLGs formed by somatic mutations and differing by 1–2 mutations from the large clones. Rare sexual events, occasional long-distance migration, and somatic mutations contribute new genotypic variation potentially available to natural selection. However, dominance of a few very large (and presumably old) clones over extensive spatial and temporal scales suggested that either these have superior traits or natural selection has only been marginally involved in the structuring of genotypes.
机译:摘要在有性繁殖和无性繁殖的雌雄异体物种中,单个克隆的空间分布影响有性繁殖和局部适应的潜力。波罗的海特有的海藻褐藻(Fusus radicans)具有不同的性别,但新附着的塔利也可能无性地形成。我们在波罗的海的宏观地理(> 500 km)和微观地理(<100 m)尺度上绘制了克隆(多基因座基因型,MLG)的空间分布,以评估克隆空间结构,有性募集和自然选择潜力之间的关系。在某些领域,性招募占主导地位,而在另一些领域,无性招募则占主导地位。在两性的克隆在当地混杂在一起的地方,性征募集仍然很低。在一些高度克隆的种群中,由于一个或几个相同性别的克隆的优势,性别比例严重偏向。最大的两个克隆(一个雌性和一个雄性)分布在沿海100-550公里,并伴有由体细胞突变形成的小而局部的MLG,与大型克隆相差1-2个突变。罕见的性事件,偶尔的远距离迁徙和体细胞突变为自然选择提供了新的基因型变异。然而,在广泛的空间和时间尺度上,一些非常大(可能是古老的)克隆的优势表明它们要么具有优良的性状,要么自然选择仅少量参与了基因型的构建。

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