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Identification of candidate loci for adaptive phenotypic plasticity in natural populations of spadefoot toads

机译:鉴定Spadefoot蟾蜍天然群体的适应性表型可塑性候选基因座

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Phenotypic plasticity allows organisms to alter their phenotype in direct response to changes in the environment. Despite growing recognition of plasticity's role in ecology and evolution, few studies have probed plasticity's molecular bases—especially using natural populations. We investigated the genetic basis of phenotypic plasticity in natural populations of spadefoot toads (Spea multiplicata). Spea tadpoles normally develop into an “omnivore” morph that is favored in long‐lasting, low‐density ponds. However, if tadpoles consume freshwater shrimp or other tadpoles, they can alternatively develop (via plasticity) into a “carnivore” morph that is favored in ephemeral, high‐density ponds. By combining natural variation in pond ecology and morph production with population genetic approaches, we identified candidate loci associated with each morph (carnivores vs. omnivores) and loci associated with adaptive phenotypic plasticity (adaptive vs. maladaptive morph choice). Our candidate morph loci mapped to two genes, whereas our candidate plasticity loci mapped to 14 genes. In both cases, the identified genes tended to have functions related to their putative role in spadefoot tadpole biology. Our results thereby form the basis for future studies into the molecular mechanisms that mediate plasticity in spadefoots. More generally, these results illustrate how diverse loci might mediate adaptive plasticity.
机译:表型可塑性使生物能够在对环境变化的直接反应中改变其表型。尽管在生态和演化中越来越苛刻的塑性的作用,但很少有研究探讨了塑性的分子碱 - 特别是使用天然群体。我们调查了Spadefoot蟾蜍的天然群体中表型可塑性的遗传基础(Spea uldplicata)。 Spea Tadpoles通常发展成为一种“omnivore”变形,这些变形是有利于持久的低密度的池塘。然而,如果蝌蚪消耗淡水虾或其他蝌蚪,它们可以替代地发展(通过可塑性)进入“食肉动物”变形,这些变形在短暂的高密度池塘中受到青睐。通过将池塘生态和变形与种群遗传方法的自然变化相结合,我们鉴定了与每个变形(肉食病毒与omnivores)相关的候选基因座和与适应性表型可塑性相关的基因座(适应性与适应与患者的MALPH选择)。我们的候选变形基因座映射到两个基因,而我们候选塑性基因座映射到14个基因。在这两种情况下,所发现的基因往往具有与其在Spadefoot蝌蚪生物学中的调整作用有关的职能。我们的结果形成了未来研究进入Spadefoot中塑性的分子机制的基础。更一般地说,这些结果说明了何种不同的基因座可能介导适应性可塑性。

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