首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >A heterochronic shift in skeletal development in the barn owl ( Tyto furcata Tyto furcata ): A description of the ocular skeleton and tubular eye shape formation
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A heterochronic shift in skeletal development in the barn owl ( Tyto furcata Tyto furcata ): A description of the ocular skeleton and tubular eye shape formation

机译:谷仓猫头鹰骨骼发育中的异形转移(TYTO Furcata Tyto Furcata):眼镜骨架和管状眼形地层的描述

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摘要

Abstract Background The eyes of some birds of prey (Strigiformes and some eagles) are tubular in shape, which contrasts strongly with those in others, which are more globose (e.g., Galliformes) or flat (most diurnal birds). Regardless, all birds have an ocular skeleton composed of a ring of ossicles (annulus ossicularis sclerae) and a cartilage cup within the sclera. Results We show that the tubular eye of the barn owl, Tyto furcata , grows substantially in length to achieve its long axial length several weeks after hatching, well after the period when the visual input adjusts the optical system and when the scleral ossicles mineralize. This is in contrast to the chicken. The conjunctival papillae are morphologically different in each species, however, they are present for about 3 days in both birds before they degenerate. Conclusions Our data shows a heterochronic shift in the timing of scleral cartilage development and ossicle mineralization (but not induction) to later in development compared to in the chicken. These shifts likely relate to the altricial vs precocial nature of these birds and suggests that the scleral ossicles are likely functionally important bones for vision in owls and possibly other altricial species.
机译:摘要背景猎物(Strigiformes和一些老鹰群)的眼睛是管状的,这与其他人的鲜明对比,与其他人相比,这是更具球状(例如Galliformes)或扁平的(大多数昼夜鸟类)。无论如何,所有的鸟类都有一个眼骨架,由岩石(环形Ossicularis sclerae)和巩膜内的软骨杯组成。结果表明,谷仓猫头鹰的管状眼睛,Tyto Furcata,长度大致增长,在孵化后几周内实现其长轴长度,在视觉输入调节光学系统和巩膜箱中的时期之后。这与鸡肉形成鲜明对比。结膜乳头在每种物种中的形态学不同,然而,在两只鸟之前,它们在两只鸟类中存在约3天。结论我们的数据显示了与鸡肉相比,在鸡肉松软的开发和凿子矿化(但不诱导)的时序中的异形转移。这些班次可能与这些鸟类的鸵鸟与鸵鸟vs预发情性质有关,并表明巩膜卵泡可能在猫头鹰和可能其他脑育物种中具有功能重要的骨骼。

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