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卷毛鸡羽毛中角蛋白整合的改变及相关形态发生

Modification of Keratin Integrations and the Associated Morphogenesis in Frizzling Chicken Feathers.

作者信息

Wu Hao, Chuang Tsao-Chi, Liao Wan-Chi, Chi Kai-Jung, Ng Chen-Siang, Cheng Hsu-Cheng, Juan Wen-Tau

机构信息

Graduate Institute of Biomedical Sciences, China Medical University, Taichung 40402, Taiwan.

Department of Life Sciences, National Chung Hsing University, Taichung 40227, Taiwan.

出版信息

Biology (Basel). 2024 Jun 23;13(7):464. doi: 10.3390/biology13070464.

Abstract

The morphological and compositional complexities of keratinized components make feathers ingenious skin appendages adapted to diverse ecological needs. Frizzling feathers, characterized by their distinct curling phenotypes, offer a unique model to explore the intricate morphogenesis in developing a keratin-based bioarchitecture over a wide range of morphospace. Here, we investigated the heterogeneous allocation of α- and β-keratins in flight feather shafts of homozygous and heterozygous frizzle chickens by analyzing the medulla-cortex integrations using quantitative morphology characterizations across scales. Our results reveal the intriguing construction of the frizzling feather shaft through the modified medulla development, leading to a perturbed balance of the internal biomechanics and, therefore, introducing the inherent natural frizzling compared to those from wild-type chickens. We elucidate how the localized developmental suppression of the α-keratin in the medulla interferes with the growth of the hierarchical keratin organization by changing the internal stress in the frizzling feather shaft. This research not only offers insights into the morphogenetic origin of the inherent bending of frizzling feathers but also facilitates our in-depth understanding of the developmental strategies toward the diverse integuments adapted for ecological needs.

摘要

角质化成分在形态和组成上的复杂性使羽毛成为适应各种生态需求的精巧皮肤附属物。卷曲羽毛具有独特的卷曲表型,为探索在广泛形态空间中构建基于角蛋白的生物结构时复杂的形态发生过程提供了一个独特模型。在这里,我们通过跨尺度的定量形态学表征分析髓质 - 皮质整合,研究了纯合和杂合卷曲鸡飞行羽轴中α - 角蛋白和β - 角蛋白的异质分布。我们的结果揭示了通过改变髓质发育构建卷曲羽轴的有趣过程,导致内部生物力学平衡受到干扰,因此与野生型鸡的羽轴相比出现了固有的自然卷曲。我们阐明了髓质中α - 角蛋白的局部发育抑制如何通过改变卷曲羽轴内的内部应力来干扰分层角蛋白组织的生长。这项研究不仅为卷曲羽毛固有弯曲的形态发生起源提供了见解,还有助于我们深入理解为适应生态需求而形成各种体表结构的发育策略。

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