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Genomic organization, transcriptomic analysis, and functional characterization of avian α- and β-keratins in diverse feather forms
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Genomic organization, transcriptomic analysis, and functional characterization of avian α- and β-keratins in diverse feather forms

Chen Siang Ng, Ping Wu, Wen-Lang Fan, Jie Yan, Chih-Kuan Chen, Yu-Ting Lai, Siao-Man Wu, Chi-Tang Mao, Jun-Jie Chen, Mei-Yeh Jade Lu, …
Genome Biology and Evolution, 卷.6(9), 頁碼.2258-2273
2014
PMID: 25152353

摘要

Chicken Evolution Feather In situ hybridization Keratin RNA-seq Skin appendage Transcriptome Zebra finch Ecology Evolution Behavior and Systematics Genetics
Feathers are hallmark avian integument appendages, although they were also present on theropods. They are composed of flexible corneous materials made of α- and b-keratins, but their genomic organization and their functional roles in feathers have not been well studied. First, we made an exhaustive search of α- and β-keratin genes in the new chicken genome assembly (Galgal4). Then, using transcriptomic analysis, we studied α- and b-keratin gene expression patterns in five types of feather epidermis. The expression patterns of β-keratin genes were different in different feather types, whereas those of α-keratin genes were less variable. In addition, we obtained extensive α- and β-keratin mRNA in situ hybridization data, showing that α-keratins and β-keratins are preferentially expressed in different parts of the feather components. Together, our data suggest that feather morphological and structural diversity can largely be attributed to differential combinations of α- and β-keratin genes in different intrafeather regions and/or feather types from different body parts. The expression profiles provide new insights into the evolutionary origin and diversification of feathers. Finally, functional analysis using mutant chicken keratin forms based on those found in the human α-keratin mutation database led to abnormal phenotypes. This demonstrates that the chicken can be a convenient model for studying the molecular biology of human keratin-based diseases.

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