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Genetic correlations between adults and larvae in a marine fish: potential effects of fishery selection on population replenishment

机译:海水鱼成年与幼虫之间的遗传相关:渔业选择对种群补充的潜在影响

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摘要

Correlated genetic responses have been hypothesized as important components of fishery-induced evolution, although predictive data from wild populations have been difficult to obtain. Here, we demonstrate substantial genetic correlations between a trait often subjected to fishery selection (adult body length) and traits that affect survival of larvae (length and swimming performance) in a wild population of a marine fish (bicolor damselfish, Stegastes partitus). Through both genetic covariance and size-dependent maternal effects, selection on adult size may cause a considerable, correlated response in larval traits. To quantify how variation in larval traits may affect survival, we introduce a flexible method that uses information from selection measurements to account for frequency dependence and estimate the relationship between phenotype and relative survival across a broad range of phenotypic values. Using this method, we synthesize studies of selective mortality on larval size for eight species of fish and show that variation in larval size may result in considerable variation in larval survival. We predict that observed rates of fishery selection on adult marine fishes may substantially reduce larval size and survival. The evolution of smaller larvae in response to fishery selection may therefore have substantial consequences for the viability of fished populations.
机译:尽管很难从野生种群中获得预测数据,但相关的遗传反应被认为是渔业诱发的进化的重要组成部分。在这里,我们证明了经常受到渔业选择的性状(成虫的体长)与影响海洋鱼类野生种群中的幼体存活(性状的雀鲷,Stegastes partitus)的性状之间的实质遗传相关性。通过遗传协方差和大小相关的母体效应,对成年大小的选择可能引起幼虫性状的相当大的相关反应。为了量化幼虫性状的变化如何影响生存,我们引入了一种灵活的方法,该方法使用来自选择测量的信息来说明频率依赖性,并估计在广泛的表型值范围内表型和相对生存之间的关系。使用这种方法,我们对八种鱼的幼体大小选择性死亡率进行了综合研究,结果表明,幼体大小的变化可能导致幼体存活率的显着变化。我们预测,在成年海鱼上观察到的渔业选择率可能会大大降低幼体的大小和存活率。因此,响应于渔业选择,幼虫的进化可能对被捕捞种群的生存能力产生重大影响。

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