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证据表明四足动物的指骨没有统一身份,鸟类翅膀的指骨发生了有限的移位。

Evidence against tetrapod-wide digit identities and for a limited frame shift in bird wings.

机构信息

Department of Ecology and Evolutionary Biology, Yale University, New Haven, CT, 06520, USA.

Minnesota Center for Philosophy of Science, University of Minnesota, Minneapolis, MN, 55455, USA.

出版信息

Nat Commun. 2019 Jul 19;10(1):3244. doi: 10.1038/s41467-019-11215-8.

Abstract

In crown group tetrapods, individual digits are homologized in relation to a pentadactyl ground plan. However, testing hypotheses of digit homology is challenging because it is unclear whether digits represent distinct and conserved gene regulatory states. Here we show dramatic evolutionary dynamism in the gene expression profiles of digits, challenging the notion that five digits have conserved developmental identities across amniotes. Transcriptomics shows diversity in the patterns of gene expression differentiation of digits, although the anterior-most digit of the pentadactyl limb has a unique, conserved expression profile. Further, we identify a core set of transcription factors that are differentially expressed among the digits of amniote limbs; their spatial expression domains, however, vary between species. In light of these results, we reevaluate the frame shift hypothesis of avian wing evolution and conclude only the identity of the anterior-most digit has shifted position, suggesting a 1,3,4 digit identity in the bird wing.

摘要

在皇冠群四足动物中,各个手指与五指的基础模式相对应。然而,测试手指同源性的假说具有挑战性,因为不清楚手指是否代表了不同的和保守的基因调控状态。在这里,我们展示了数字基因表达谱的巨大进化活力,挑战了五指在羊膜动物中具有保守发育身份的概念。转录组学显示了数字基因表达分化模式的多样性,尽管五趾肢的最前端手指具有独特的、保守的表达模式。此外,我们确定了一组在羊膜动物肢体的数字中差异表达的转录因子;然而,它们的空间表达域在不同物种之间存在差异。有鉴于此,我们重新评估了鸟类翅膀进化的移码假说,并得出结论,只有最前端的数字改变了位置,这表明鸟类翅膀的前三个数字保持不变。

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