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Survival of the Currently Fittest: Genetics of Rainbow Trout Survival Across Time and Space

机译:当前优胜劣汰的生存:虹鳟生存时间和空间的遗传学

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摘要

As a fitness trait, survival is assumed to exhibit low heritability due to strong selection eroding genetic variation and/or spatio-temporal variation in mortality agents reducing genetic and increasing residual variation. The latter phenomenon in particular may contribute to low heritability in multigeneration data, even if certain cohorts exhibit significant genetic variation. Analysis of survival data from 10 year classes of rainbow trout reared at three test stations showed that treating survival as a single trait across all generations resulted in low heritability (h2 = 0.08–0.17). However, when heritabilities were estimated from homogeneous generation and test station-specific cohorts, a wide range of heritability values was revealed (h2 = 0.04–0.71). Of 64 genetic correlations between different cohorts, 20 were positive, but 16 were significantly negative, confirming that genetic architecture of survival is not stable across generations and environments. These results reveal the existence of hidden genetic variation for survival and demonstrate that treating survival as one trait over several generations may not reveal its true genetic architecture. Negative genetic correlations between cohorts indicate that overall survival has limited potential to predict general resistance, and care should be taken when using it as selection criterion.
机译:作为适应性状,由于强选择会侵蚀遗传变异和/或死亡因子的时空变异,从而降低遗传和增加残留变异,因此认为生存表现出较低的遗传力。即使某些群体表现出显着的遗传变异,后一种现象尤其可能导致多代数据的遗传力降低。对在三个试验站饲养的10年级虹鳟鱼的存活数据进行的分析表明,将存活作为所有世代​​的单一性状将导致遗传力较低(h 2 = 0.08–0.17)。但是,当从同质世代和特定于测试站的队列中估算遗传力时,可以发现广泛的遗传力值(h 2 = 0.04-0.71)。在不同队列之间的64个遗传相关中,有20个呈阳性,但有16个呈显着负相关,这证实了世代和环境之间生存的遗传结构不稳定。这些结果揭示了生存的隐性遗传变异的存在,并表明将生存视为几代人的一个特征可能无法揭示其真正的遗传结构。队列之间的负遗传相关性表明总体存活率预测总体耐药性的潜力有限,将其用作选择标准时应格外小心。

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