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机械力对鸟类有羽毛皮肤图案形成的作用:鸟类皮肤肌肉组织的生物力学分析。

The role of mechanical forces on the patterning of the avian feather-bearing skin: A biomechanical analysis of the integumentary musculature in birds.

作者信息

Homberger Dominique G, de Silva Kumudini N

机构信息

Departement of Biological Sciences, Louisiana State University, Baton Rouge, Louisiana 70803, USA.

出版信息

J Exp Zool B Mol Dev Evol. 2003 Aug 15;298(1):123-39. doi: 10.1002/jez.b.30.

DOI:10.1002/jez.b.30
PMID:12949773
Abstract

The integumentary musculature of birds consists of three distinct components. The smooth musculature comprises feather and apterial muscles, which form a continuous musculo-elastic layer within the dermis. The feather muscles, which consistently include at least erectors and depressors, interconnect contour feathers within pterylae (i.e., feather tracts) along gridlines that are oriented diagonally to the longitudinal and transverse axes of the body. The apterial muscles interconnect pterylae by attaching to the contour feathers along their peripheries. The striated musculature is composed of individual subcutaneous muscles, most of which attach to contour feathers along the caudal periphery of pterylae A new integrative functional analysis of the integumentary musculature proposes how apterial muscles stabilize the pterylae and modulate the tension of the musculo-elastic layer, and how subcutaneous muscles provide the initial stimulus for erector muscles being able to ruffle the contour feathers within pterylae. It also shows how the arrangement of the contour feathers and integumentary muscles reflects the stresses and strains that act on the avian skin. These mechanical forces are in effect not only in the adult, especially during flight, but may also be active during feather morphogenesis. The avian integument with its complex structural organization may, therefore, represent an excellent model for analyzing the nature of interactions between the environment and genetic material. The predictions of our model are testable, and our study demonstrates the relevance of integrated analyses of complex organs as mechanically coherent systems for evolutionary and developmental biology.

摘要

鸟类的皮肤肌肉组织由三个不同的部分组成。平滑肌组织包括羽肌和裸区肌,它们在真皮内形成一个连续的肌肉弹性层。羽肌始终至少包括竖羽肌和降羽肌,它们沿着与身体纵轴和横轴成对角线方向的网格线,在羽区内(即羽迹)连接轮廓羽。裸区肌通过附着在轮廓羽的周边来连接羽区。横纹肌组织由单个皮下肌肉组成,其中大部分沿着羽区A的尾缘附着在轮廓羽上。一项关于皮肤肌肉组织的新的综合功能分析提出了裸区肌如何稳定羽区并调节肌肉弹性层的张力,以及皮下肌肉如何为竖羽肌提供初始刺激,使其能够使羽区内的轮廓羽竖起。它还展示了轮廓羽和皮肤肌肉的排列如何反映作用于鸟类皮肤的应力和应变。这些机械力不仅在成年鸟类中有效,尤其是在飞行过程中,而且在羽毛形态发生过程中也可能起作用。因此,具有复杂结构组织的鸟类皮肤可能是分析环境与遗传物质之间相互作用本质的一个极佳模型。我们模型的预测是可检验的,我们的研究证明了将复杂器官作为机械连贯系统进行综合分析对进化生物学和发育生物学的相关性。

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