首页> 外文期刊>Heredity: An International Journal of Genetics >Moderate genetic drift is driven by extreme recruitment events in the invasive mollusk Crepidula fornicata
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Moderate genetic drift is driven by extreme recruitment events in the invasive mollusk Crepidula fornicata

机译:中等遗传漂移是由侵入式软体动物克雷皮杜的极端招聘活动驱动

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摘要

Effective population size (Ne) is a measure of genetic drift and is thus a central parameter in evolution, conservation genetics and invasion biology. Interestingly, in native marine species, Ne is typically several orders of magnitude lower than the census size. This pattern has often been explained by high fecundity, variation in reproductive success and pronounced early mortality, resulting in genetic drift across generations. Data documenting genetic drift and/or N-e in marine invasive species are, however, still scarce. We examined the importance of genetic drift in the invasive species Crepidula fornicata by genotyping 681 juveniles sampled during each annual recruitment peak over nine consecutive years in the Bay of Morlaix (Brittany, France). Observed variations in genetic diversity were partially explained by variation in recruitment intensity. In addition, substantial temporal genetic differentiation was documented (that is, genetic drift), and was attributed to nonrandom variance in the reproductive success of different breeding groups across years in the study species. Using a set of single-sample and temporal estimators for N-e, we estimated N-e to be three or four orders of magnitude smaller than the census size (N-c). On one hand, this reduction in N-e relative to N-c appeared congruent with, although slight higher than, values commonly observed in native marine species. Particular life-history traits of this invasive species may play an important role in buffering genetic drift. On the other hand, N-e still remained far below N-c, hence, possibly reducing the efficiency of selection effects.
机译:有效的人口大小(NE)是遗传漂移的衡量标准,因此是进化,保护遗传学和入侵生物学中的中心参数。有趣的是,在本地海洋物种中,NE通常比人口普查尺寸低几个数量级。这种模式经常被高繁殖,生殖成功的变化和发明的早期死亡率的解释,导致几代遗传漂移。然而,数据记录遗传漂移和/或N-e在海洋侵入物种中的数据仍然是稀缺的。我们研究了在Morlaix(布列塔尼湾(法国Brittany)的每年年度招聘高峰期间对侵袭性物种Crejidata endivata的遗传漂移遗传漂移的重要性。通过招生强度的变化,部分解释了遗传多样性的观察结果。此外,记录了大量临时遗传分化(即遗传漂移),并且归因于研究物种多年不同育种组的生殖成功的非谐波差异。使用一组用于N-E的单样本和时间估计,我们估计了N-E的数量小于人口普查尺寸(N-C)。一方面,相对于N-C的N-E的这种降低出现了一致,尽管在天然海洋物种中通常观察到的值略高。这种侵入物种的特殊寿命性状可能在缓冲遗传漂移方面发挥重要作用。另一方面,N-E仍然仍远低于N-C,因此,可能降低了选择效果的效率。

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    Univ Paris 06 UMR 7144 Team Divers &

    Connect Coastal Marine Landscapes Stn Biol Roscoff Roscoff;

    Univ Paris 06 UMR 7144 Team Divers &

    Connect Coastal Marine Landscapes Stn Biol Roscoff Roscoff;

    Univ Paris 06 UMR 7144 Team Divers &

    Connect Coastal Marine Landscapes Stn Biol Roscoff Roscoff;

    Univ Paris 06 UMR 7144 Team Divers &

    Connect Coastal Marine Landscapes Stn Biol Roscoff Roscoff;

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  • 正文语种 eng
  • 中图分类 遗传学;
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