首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Heritability estimation via molecular pedigree reconstruction in a wild fish population reveals substantial evolutionary potential for sea age at maturity, but not size within age classes
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Heritability estimation via molecular pedigree reconstruction in a wild fish population reveals substantial evolutionary potential for sea age at maturity, but not size within age classes

机译:通过野生鱼群中的分子血统重建遗传性估算揭示了在成熟时的大量进化潜力,但在年龄课程中没有规模

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摘要

While evolutionary responses require heritable variation, estimates of heritability (h(2)) from wild fish populations remain rare. A 20-year molecular pedigree for a wild Scottish population of Atlantic salmon (Salmo salar) was used to investigate genetic contributions to (co) variation in two important, correlated, phenotypic traits: "sea age" (number of winters spent at sea prior to spawning) and size-at-maturity (body length just prior to spawning). Sea age was strongly heritable (h(2) = 0.51) and size exhibited moderate heritability (h(2) = 0.27). A very strong genetic correlation (r(G) = 0.96) between these traits implied the same functional loci must underpin variation in each. Indeed, body size within sea ages had much lower heritability that did not differ significantly from zero. Thus, within wild S. salar populations, temporal changes in sea age composition could reflect evolutionary responses, whereas rapid changes of body size within sea ages are more likely due to phenotypic plasticity. These inheritance patterns will influence the scope of evolutionary responses to factors such as harvest or climate change and, hence, have management implications for salmonid populations comprising a mix of sea ages.
机译:虽然进化反应需要遗传变化,但野生鱼群的遗传性估计(H(2))仍然罕见。用于野生苏格兰大西洋鲑鱼(Salmo Salar)的20年分子谱系用于调查两个重要,相关的表型特征的遗传贡献:“海时代”(海上花费的冬季人数产卵)和尺寸 - 在产卵前的身高(身体长度)。海时代强烈遗传(H(2)= 0.51)和大小表现出中度可遗传性(H(2)= 0.27)。这些特征之间隐含相同功能基因座之间的非常强的遗传相关(R(g)= 0.96)必须支撑每个功能基因座。实际上,海洋中的身体大小与零有明显不同的遗传性。因此,在野生S.酱油中,海时代组合物的时间变化可以反映进化反应,而由于表型可塑性,海洋衰老中的身体大小的快速变化更可能。这些遗传模式将影响对收获或气候变化等因素的进化响应的范围,因此对包含海洋混合的鲑鱼种群具有管理影响。

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