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Development and evolutionary origin of feathers.

机译:羽毛的发展和进化起源。

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摘要

Avian feathers are a complex evolutionary novelty characterized by structural diversity and hierarchical development. Here, I propose a functionally neutral model of the origin and evolutionary diversification of bird feathers based on the hierarchical details of feather development. I propose that feathers originated with the evolution of the first feather follicle-a cylindrical epidermal invagination around the base of a dermal papilla. A transition series of follicle and feather morphologies is hypothesized to have evolved through a series of stages of increasing complexity in follicle structure and follicular developmental mechanisms. Follicular evolution proceeded with the origin of the undifferentiated collar (stage I), barb ridges (stage II), helical displacement of barb ridges, barbule plates, and the new barb locus (stage III), differentiation of pennulae of distal and proximal barbules (stage IV), and diversification of barbule structure and the new barb locus position (stage V). The model predicts that the first feather was an undifferentiated cylinder (stage I), which was followed by a tuft of unbranched barbs (stage II). Subsequently, with the origin of the rachis and barbules, the bipinnate feather evolved (stage III), followed then by the pennaceous feather with a closed vane (stage IV) and other structural diversity (stages Va-f). The model is used to evaluate the developmental plausibility of proposed functional theories of the origin of feathers. Early feathers (stages I, II) could have functioned in communication, defense, thermal insulation, or water repellency. Feathers could not have had an aerodynamic function until after bipinnate, closed pennaceous feathers (stage IV) had evolved. The morphology of the integumental structures of the coelurisaurian theropod dinosaurs Sinosauropteryx and Beipiaosaurus are congruent with the model's predictions of the form of early feathers (stage I or II). Additional research is required to examine whether these fossil integumental structures developed from follicles and are homologous with avian feathers. J. Exp. Zool. (Mol. Dev. Evol.) 285:291-306, 1999.Copyright 1999 Wiley-Liss, Inc.
机译:禽羽毛是一个复杂的进化新奇,其特征是结构的多样性和层次的发展。在此,我基于羽毛发育的层次结构细节,提出了一种功能中立的鸟类羽毛起源和进化多样化的模型。我认为羽毛起源于第一个羽毛毛囊的进化-圆柱形乳头周围的圆柱形表皮内陷。卵泡和羽毛形态的过渡系列被假定为经历了一系列不断增加的卵泡结构和卵泡发育机制复杂性阶段。卵泡的进化始于未分化的颈圈的起源(I期),倒钩II(II期),倒钩脊,bar板和新的倒钩位点的螺旋位移(Ⅲ期),远侧和近端bar突的分化(第四阶段),以及小球结构的多样化和新的倒钩基因座位置(第五阶段)。该模型预测第一根羽毛是未分化的圆柱(阶段I),然后是一簇未分支的倒钩(阶段II)。随后,随着羽扇豆和小鳞茎的起源,演化了双羽状羽毛(阶段III),然后是具有封闭叶片的针状羽毛(阶段IV)和其他结构多样性(阶段Va-f)。该模型用于评估提出的羽毛起源功能理论的合理性。早期的羽毛(I,II阶段)可能在通讯,防御,隔热或防水方面起作用。直到双羽状的,闭合的针状羽毛(第四阶段)形成后,羽毛才能具有空气动力学功能。腔棘龙兽脚亚目恐龙中皮龙和贝皮龙的外皮结构形态与模型对早期羽毛形式(阶段I或阶段II)的预测是一致的。需要进一步的研究来检查这些化石的外皮结构是否从卵泡发育出来并与禽羽毛同源。 J. Exp。 Zool。 (Mol.Dev.Evol。)285:291-306,1999.版权所有1999 Wiley-Liss,Inc.

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