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Mapping of quantitative trait loci for life history traits segregating within common frog populations

机译:生活史的定量特质基因座的映射特征在普通青蛙群体中的分离

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The evolution of complex traits is often shaped by adaptive divergence. However, very little is known about the number, effect size, and location of the genomic regions influencing the variation of these traits in natural populations. Based on a dense linkage map of the common frog, Rana temporaria, we have localized, for the first time in amphibians, three significant and nine suggestive quantitative trait loci (QTLs) for metabolic rate, growth rate, development time, and weight at metamorphosis, explaining 5.6-18.9% of the overall phenotypic variation in each trait. We also found a potential pleiotropic QTL between development time and size at metamorphosis that, if confirmed, might underlie the previously reported genetic correlation between these traits. Furthermore, we demonstrate that the genetic variation linked to fitness-related larval traits segregates within Rana temporaria populations. This study provides the first insight into the genomic regions that affect larval life history traits in anurans, providing a valuable resource to delve further into the genomic basis of evolutionary change in amphibians.
机译:复杂性状的演变通常通过自适应分歧来塑造。然而,关于影响自然群体中这些性状变化的基因组区域的数量,效果大小和位置很少。基于常见的青蛙的密集联系地图,我们已经本地化,在两栖动物中的第一次,三个重要和九个暗示的定量特质基因座(QTLS)用于代谢率,增长率,发育时间和变态的重量,解释每个特征的总体表型变异的5.6-18.9%。我们还发现了一种在变态下的发育时间和大小之间的潜在的磷酸型QTL,如果确认,可以利于这些特征之间先前报告的遗传相关性。此外,我们证明,与健身相关的幼虫特征相关的遗传变异在Rana颞蛙群中的分离。本研究提供了对基因组区域的第一洞察力,这些地区影响灭绝的幼虫生命历史特征,提供了一种有价值的资源,进一步进入两栖动物进化变化的基因组基础。

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