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The evolutionary origins of beneficial alleles during the repeated adaptation of garter snakes to deadly prey

机译:袜带蛇反复适应致命猎物期间有益等位基因的进化起源

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Where do the genetic variants underlying adaptive change come from? Are currently adaptive alleles recruited by selection from standing genetic variation within populations, moved through introgression from other populations, or do they arise as novel mutations? Here, we examine the molecular basis of repeated adaptation to the toxin of deadly prey in 3 species of garter snakes (Thamnophis) to determine whether adaptation has evolved through novel mutations, sieving of existing variation, or transmission of beneficial alleles across species. Functional amino acid substitutions in the skeletal rruscle sodium channel (Na_v1.4) are largely responsible for the physiological resistance of garter snakes to tetrodotoxin found in their newt (Taricha) prey. Phylogenetic analyses reject the hypotheses that the unique resistance alleles observed in multiple Thamnophis species were present before the split of these lineages, or that alleles were shared among species through occasional hybridization events. Our results demonstrate that adaptive evolution has occurred independently multiple times in garter snakes via the de novo acquisition of beneficial mutations.
机译:适应性变化的遗传变异来自何处?当前是否是通过从种群内的常规遗传变异中进行选择而招募的适应性等位基因,是通过与其他种群的基因渗入而迁移的,还是它们作为新的突变出现?在这里,我们研究了3种袜带蛇(Thamnophis)对致命猎物毒素的重复适应的分子基础,以确定适应性是否已通过新的突变,现有变异的筛分或有益等位基因在物种间的传播而进化。骨骼齿钠通道中的功能性氨基酸取代(Na_v1.4)很大程度上是对吊袜蛇对new(Taricha)猎物中河豚毒素的生理抗性的原因。系统发育分析拒绝了这样的假说,即在多个血吸虫物种中观察到的独特抗性等位基因在这些谱系分裂之前就已经存在,或者这些等位基因通过偶然的杂交事件在物种之间共享。我们的结果表明,通过从头获得有益突变,在吊袜带蛇中多次独立发生适应性进化。

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