首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >A High Load of Non-neutral Amino-Acid Polymorphisms Explains High Protein Diversity Despite Moderate Effective Population Size in a Marine Bivalve With Sweepstakes Reproduction
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A High Load of Non-neutral Amino-Acid Polymorphisms Explains High Protein Diversity Despite Moderate Effective Population Size in a Marine Bivalve With Sweepstakes Reproduction

机译:高负荷的非中性氨基酸多态性说明尽管有抽奖繁殖的海洋双壳类中有效种群大小适度的高蛋白多样性。

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摘要

Marine bivalves show among the greatest allozyme diversity ever reported in Eukaryotes, putting them historically at the heart of the neutralist−selectionist controversy on the maintenance of genetic variation. Although it is now acknowledged that this high diversity is most probably a simple consequence of a large population size, convincing support for this explanation would require a rigorous assessment of the silent nucleotide diversity in natural populations of marine bivalves, which has not yet been done. This study investigated DNA sequence polymorphism in a set of 37 nuclear loci in wild samples of the flat oyster Ostrea edulis. Silent diversity was found to be only moderate (0.7%), and there was no departure from demographic equilibrium under the Wright-Fisher model, suggesting that the effective population size might not be as large as might have been expected. In accordance with allozyme heterozygosity, nonsynonymous diversity was comparatively very high (0.3%), so that the nonsynonymous to silent diversity ratio reached a value rarely observed in any other organism. We estimated that one-quarter of amino acid-changing mutations behave as neutral in O. edulis, and as many as one-third are sufficiently weakly selected to segregate at low frequency in the polymorphism. Finally, we inferred that one oyster is expected to carry more than 4800 non-neutral alleles (or 4.2 cM−1). We conclude that a high load of segregating non-neutral amino-acid polymorphisms contributes to high protein diversity in O. edulis. The high fecundity of marine bivalves together with an unpredictable and highly variable success of reproduction and recruitment (sweepstakes reproduction) might produce a greater decoupling between Ne and N than in other organisms with lower fecundities, and we suggest this could explain why a higher segregating load could be maintained for a given silent mutation effective size.
机译:海洋双壳类动物显示出真核生物中有史以来最大的同工酶多样性,这使它们在历史上一直处于维持遗传变异的中立选择主义争论的核心。尽管现在已经认识到,这种高度多样性很可能是种群数量庞大的简单结果,但要说服这种支持,就需要对海洋双壳类自然种群中的沉默核苷酸多样性进行严格评估,而这尚未完成。这项研究调查了扁平牡蛎Osrea edulis野生样品中一组37个核基因座的DNA序列多态性。在Wright-Fisher模型下,沉默的多样性只有中等水平(0.7%),并且没有偏离人口均衡,这表明有效人口规模可能没有预期的大。根据同工酶杂合性,非同义多样性相对较高(0.3%),因此非同义与沉默多样性的比率达到了在任何其他生物中都很少观察到的值。我们估计,四分之一的氨基酸变化突变在可食的O. edulis中表现为中性,并且多达三分之一的弱选择足以在多态性中以较低频率分离。最后,我们推断一只牡蛎有望携带4800多个非中性等位基因(或4.2 cM -1 )。我们得出的结论是,分离非中性氨基酸多态性的高负荷有助于食用紫花苜蓿的高蛋白多样性。海洋双壳类的繁殖力高,再生产和募集(抽奖繁殖)的成功和变化不可预测且变化很大,与其他繁殖力较低的生物相比,Ne和N之间的去耦作用更大,我们建议这可以解释为什么分离负荷更高的原因可以保持给定的沉默突变有效大小。

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