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Gradual evolution towards flightlessness in steamer ducks

机译:在蒸笼鸭子中飞行的逐渐发展

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Flightlessness in birds is the product of changes in suites of characters-including increased body size and reduced anterior limbs- that have evolved repeatedly and independently under similar ecological conditions (generally insularity). It remains unknown whether this phenotypic convergence extends to the genomic level, partially because many losses of flight occurred long ago (such as in penguins or ratites), thus complicating the study of the genetic pathways to flightlessness. Here, we use genome sequencing to study the evolution of flightlessness in a group of ducks that are current and dynamic exemplars of this major functional transition. These recently diverged Tachyeres steamer ducks differ in their ability to fly: one species is predominantly flighted and three are mainly flightless. Through a genome-wide association analysis, we identify two narrow candidate genomic regions implicated in the morphological changes that led to flightlessness, and reconstruct the number of times flightlessness has evolved in Tachyeres. The strongest association is with DYRK1A, a gene that when knocked out in mice leads to alterations in growth and bone morphogenesis. These findings, together with phylogenetic and demographic analyses, imply that the genomic changes leading to flightlessness in Tachyeres may have evolved once, and that this trait remains functionally polymorphic in two species.
机译:鸟类中的不断旺旺是人物套房变化的产物 - 包括增加的体型和减少前肢 - 在类似的生态条件下反复且独立地演变(通常是绝缘性)。它仍然未知这种表型收敛是否延伸到基因组水平,部分是因为很久以前发生了许多飞行损失(例如在企鹅或尺方中),因此使遗传途径的研究使遗传途径变得不失。在这里,我们使用基因组测序来研究一组鸭子的不断的演变,这是这种主要功能过渡的电流和动态示例的鸭子。这些最近分流了Tachyeres蒸笼鸭子的飞行能力:一个物种主要是飞行的,三个主要是不断的。通过基因组 - 范围的关联分析,我们鉴定了两个狭窄的候选基因组区域,涉及导致飞行的形态变化,并重建不必要的次数在Tachyers中发展。最强大的关联是司法德,当敲除小鼠时导致生长和骨形态发生的改变。这些发现与系统发育和人口分析一起暗示,导致Tachyeres中不断变化的基因组变化可能已经进化一次,并且该特征在两个物种中仍然在功能上多态。

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