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Structure ontogeny and evolution of the patellar tendon in emus (Dromaius novaehollandiae) and other palaeognath birds

机译:us(Dromaius novaehollandiae)和其他古gna鸟的pa腱的结构个体发育和进化

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摘要

The patella (kneecap) exhibits multiple evolutionary origins in birds, mammals, and lizards, and is thought to increase the mechanical advantage of the knee extensor muscles. Despite appreciable interest in the specialized anatomy and locomotion of palaeognathous birds (ratites and relatives), the structure, ontogeny and evolution of the patella in these species remains poorly characterized. Within Palaeognathae, the patella has been reported to be either present, absent, or fused with other bones, but it is unclear how much of this variation is real, erroneous or ontogenetic. Clarification of the patella’s form in palaeognaths would provide insight into the early evolution of the patella in birds, in addition to the specialized locomotion of these species. Findings would also provide new character data of use in resolving the controversial evolutionary relationships of palaeognaths. In this study, we examined the gross and histological anatomy of the emu patellar tendon across several age groups from five weeks to 18 months. We combined these results with our observations and those of others regarding the patella in palaeognaths and their outgroups (both extant and extinct), to reconstruct the evolution of the patella in birds. We found no evidence of an ossified patella in emus, but noted its tendon to have a highly unusual morphology comprising large volumes of adipose tissue contained within a collagenous meshwork. The emu patellar tendon also included increasing amounts of a cartilage-like tissue throughout ontogeny. We speculate that the unusual morphology of the patellar tendon in emus results from assimilation of a peri-articular fat pad, and metaplastic formation of cartilage, both potentially as adaptations to increasing tendon load. We corroborate previous observations of a ‘double patella’ in ostriches, but in contrast to some assertions, we find independent (i.e., unfused) ossified patellae in kiwis and tinamous. Our reconstructions suggest a single evolutionary origin of the patella in birds and that the ancestral patella is likely to have been a composite structure comprising a small ossified portion, lost by some species (e.g., emus, moa) but expanded in others (e.g., ostriches).
机译:birds骨(膝盖骨)在鸟类,哺乳动物和蜥蜴中表现出多种进化起源,被认为可以增加膝盖伸肌的机械优势。尽管人们对古gna类鸟类的特殊解剖和运动有很大兴趣,但这些物种中the骨的结构,个体发育和进化仍然很差。据报道Pala骨内存在tha骨,不存在other骨或与其他骨融合,但尚不清楚这种变异中有多少是真实的,错误的或个体发育的。阐明古颚中the骨的形态,除了专门研究这些物种的运动之外,还可以洞悉birds骨在鸟类中的早期进化。研究结果还将提供新的字符数据,用于解决古蛇类有争议的进化关系。在这项研究中,我们检查了从5周到18个月的几个年龄组的pa骨肌腱的肉眼和组织学解剖。我们将这些结果与我们的观察结果以及其他有关p骨及其外群(现存和灭绝)的骨的观察结果相结合,以重建birds骨在鸟类中的进化。我们没有发现em骨骨化骨的证据,但注意到其肌腱具有非常不寻常的形态,包括胶原网中包含的大量脂肪组织。 e骨肌腱在整个个体发育过程中还包括越来越多的软骨样组织。我们推测em骨肌腱的异常形态是由于关节周围脂肪垫的同化和软骨的赘生性形成所致,两者都可能是对增加肌腱负荷的适应。我们证实了鸵鸟皮中“双double骨”的先前观察结果,但与某些断言相反,我们发现猕猴桃和tin皮中有独立的(即未融合的)骨化ified骨。我们的重建表明birds骨在鸟类中具有单一的进化起源,祖先的is骨很可能是一个复合结构,包括一个很小的骨化部分,被某些物种(例如em,moa)丢失,而在其他物种(例如鸵鸟皮)中扩展了)。

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