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家鸡表皮附属器模式形成与结构的基因组决定因素

Genomic determinants of epidermal appendage patterning and structure in domestic birds.

作者信息

Boer Elena F, Van Hollebeke Hannah F, Shapiro Michael D

机构信息

Department of Biology, University of Utah, Salt Lake City, UT, USA.

Department of Biology, University of Utah, Salt Lake City, UT, USA.

出版信息

Dev Biol. 2017 Sep 15;429(2):409-419. doi: 10.1016/j.ydbio.2017.03.022. Epub 2017 Mar 24.

Abstract

Variation in regional identity, patterning, and structure of epidermal appendages contributes to skin diversity among many vertebrate groups, and is perhaps most striking in birds. In pioneering work on epidermal appendage patterning, John Saunders and his contemporaries took advantage of epidermal appendage diversity within and among domestic chicken breeds to establish the importance of mesoderm-ectoderm signaling in determining skin patterning. Diversity in chickens and other domestic birds, including pigeons, is driving a new wave of research to dissect the molecular genetic basis of epidermal appendage patterning. Domestic birds are not only outstanding models for embryonic manipulations, as Saunders recognized, but they are also ideal genetic models for discovering the specific genes that control normal development and the mutations that contribute to skin diversity. Here, we review recent genetic and genomic approaches to uncover the basis of epidermal macropatterning, micropatterning, and structural variation. We also present new results that confirm expression changes in two limb identity genes in feather-footed pigeons, a case of variation in appendage structure and identity.

摘要

表皮附属器在区域特征、模式和结构上的差异导致了许多脊椎动物群体皮肤的多样性,这在鸟类中可能最为显著。在表皮附属器模式形成的开创性研究中,约翰·桑德斯及其同时代的人利用家鸡品种内部和之间的表皮附属器多样性,确立了中胚层 - 外胚层信号在决定皮肤模式中的重要性。鸡和包括鸽子在内的其他家禽的多样性正在推动新一轮研究,以剖析表皮附属器模式形成的分子遗传基础。正如桑德斯所认识到的,家禽不仅是胚胎操作的优秀模型,也是发现控制正常发育的特定基因以及导致皮肤多样性的突变的理想遗传模型。在这里,我们回顾了最近用于揭示表皮宏观模式、微观模式和结构变异基础的遗传和基因组方法。我们还展示了新的结果,这些结果证实了毛脚鸽中两个肢体特征基因的表达变化,这是附属器结构和特征变异的一个例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1e2/5581717/e5d189e52ab1/nihms881278f1.jpg

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