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豌豆冠突变体探索揭示 sonic Hedgehog 信号在鸡鸡冠发育中的模式形成作用。

Sonic Hedgehog-signalling patterns the developing chicken comb as revealed by exploration of the pea-comb mutation.

机构信息

Department of Neuroscience, Uppsala University, Uppsala, Sweden.

出版信息

PLoS One. 2012;7(12):e50890. doi: 10.1371/journal.pone.0050890. Epub 2012 Dec 5.

Abstract

The genetic basis and mechanisms behind the morphological variation observed throughout the animal kingdom is still relatively unknown. In the present work we have focused on the establishment of the chicken comb-morphology by exploring the Pea-comb mutant. The wild-type single-comb is reduced in size and distorted in the Pea-comb mutant. Pea-comb is formed by a lateral expansion of the central comb anlage into three ridges and is caused by a mutation in SOX5, which induces ectopic expression of the SOX5 transcription factor in mesenchyme under the developing comb. Analysis of differential gene expression identified decreased Sonic hedgehog (SHH) receptor expression in Pea-comb mesenchyme. By experimentally blocking SHH with cyclopamine, the wild-type single-comb was transformed into a Pea-comb-like phenotype. The results show that the patterning of the chicken comb is under the control of SHH and suggest that ectopic SOX5 expression in the Pea-comb change the response of mesenchyme to SHH signalling with altered comb morphogenesis as a result. A role for the mesenchyme during comb morphogenesis is further supported by the recent finding that another comb-mutant (Rose-comb), is caused by ectopic expression of a transcription factor in comb mesenchyme. The present study does not only give knowledge about how the chicken comb is formed, it also adds to our understanding how mutations or genetic polymorphisms may contribute to inherited variations in the human face.

摘要

动物王国中形态变异的遗传基础和机制仍然知之甚少。在本工作中,我们通过探索豌豆冠突变体集中研究了鸡冠状结构的建立。野生型单冠的尺寸减小并且在豌豆冠突变体中变形。豌豆冠是由中央冠状结构的侧向扩张形成的三个脊,并由 SOX5 突变引起,该突变在发育中的冠状结构下的间充质中诱导 SOX5 转录因子的异位表达。差异基因表达分析确定豌豆冠间充质中 Sonic hedgehog (SHH) 受体表达降低。通过用环巴胺实验性阻断 SHH,野生型单冠转变为豌豆冠样表型。结果表明,鸡冠状结构的模式受 SHH 控制,并表明豌豆冠中异位 SOX5 表达改变了间充质对 SHH 信号的反应,导致冠状形态发生改变。间充质在冠状形态发生中的作用还得到了另一个冠状突变体(玫瑰冠)的最近发现的支持,该突变体是由于间充质中一种转录因子的异位表达引起的。本研究不仅提供了关于鸡冠状结构形成的知识,还增加了我们对突变或遗传多态性如何导致人类面部遗传变异的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a697/3515514/e1073a8f3d4c/pone.0050890.g001.jpg

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