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Dissecting the Genetic Basis of a Complex cis-Regulatory Adaptation

机译:剖析复杂的顺式调控适应的遗传基础

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摘要

Although single genes underlying several evolutionary adaptations have been identified, the genetic basis of complex, polygenic adaptations has been far more challenging to pinpoint. Here we report that the budding yeast Saccharomyces paradoxus has recently evolved resistance to citrinin, a naturally occurring mycotoxin. Applying a genome-wide test for selection on cis-regulation, we identified five genes involved in the citrinin response that are constitutively up-regulated in S. paradoxus. Four of these genes are necessary for resistance, and are also sufficient to increase the resistance of a sensitive strain when over-expressed. Moreover, cis-regulatory divergence in the promoters of these genes contributes to resistance, while exacting a cost in the absence of citrinin. Our results demonstrate how the subtle effects of individual regulatory elements can be combined, via natural selection, into a complex adaptation. Our approach can be applied to dissect the genetic basis of polygenic adaptations in a wide range of species.
机译:尽管已经确定了几种进化适应的单个基因,但是复杂,多基因适应的遗传基础很难确定。在这里,我们报道发芽的酵母悖论最近发展了对citrinin(一种天然存在的霉菌毒素)的抗性。应用全基因组测试选择顺式调控,我们确定了五个与柠檬酸反应有关的基因,它们在悖论链球菌中组成性上调。这些基因中的四个对于抗性是必需的,并且在过表达时也足以增加敏感菌株的抗性。此外,这些基因的启动子中的顺式调节差异有助于抗性,同时在缺乏柠檬绿素的情况下要付出代价。我们的结果证明了如何通过自然选择将单个调节元素的微妙效果组合成一个复杂的适应方法。我们的方法可用于剖析多种物种中多基因适应的遗传基础。

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