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进化背景下鸟类腰骶器官的生态形态学分析

Ecomorphological Analysis of the Bird Lumbosacral Organ in an Evolutionary Context.

作者信息

Pelletan Idriss, Cornette Raphaël, Abourachid Anick

机构信息

Muséum National d'Histoire Naturelle CNRS, Mecadev, Paris, France.

Institut de Systématique, Evolution, Biodiversité (ISYEB), UMR 7205, CNRS, Muséum National d'Histoire Naturelle, Paris, France.

出版信息

J Morphol. 2025 Aug;286(8):e70073. doi: 10.1002/jmor.70073.

Abstract

Birds possess a unique balance organ, the lumbosacral organ (LSO), located in the lumbosacral region of the synsacrum. This organ surrounds the spinal cord and leaves distinct traces of its size and shape on the endocast of the vertebral canal. To date, many questions about the function of the LSO and its implications in bird biology remain. Here, we investigate whether the shape of the synsacral vertebral canal endocast, influenced by the LSO, is related to locomotor habits, pelvic morphology, and phylogeny. We used 2D and 3D geometric morphometrics to characterise the shape of the digital synsacral vertebral canal cast and to test whether its morphology is indicative of locomotor behaviour and pelvic morphology. We also quantified the phylogenetic signal to determine whether phylogeny has an impact on morphology. Our results suggest that the vertebral canal endocast is shaped by the LSO, particularly in predominantly perching birds, where it is proportionally larger than in other locomotor groups. We also show that the pelvic morphology covaries significantly with the vertebral canal morphology. A proportionally larger LSO corresponds to a shorter, wider pelvis, while a smaller LSO corresponds to a longer, more slender pelvis. Finally, in addition to a strong phylogenetic signal in vertebral canal morphology, we identify allometry, indicating that body size also influences LSO morphology.

摘要

鸟类拥有一种独特的平衡器官,即腰骶器官(LSO),位于综荐骨的腰骶区域。该器官环绕着脊髓,并在椎管的内铸型上留下其大小和形状的明显痕迹。迄今为止,关于LSO的功能及其在鸟类生物学中的意义仍有许多问题。在这里,我们研究受LSO影响的综荐骨椎管内铸型的形状是否与运动习性、骨盆形态和系统发育有关。我们使用二维和三维几何形态测量学来表征数字化综荐骨椎管铸型的形状,并测试其形态是否能指示运动行为和骨盆形态。我们还量化了系统发育信号,以确定系统发育是否对形态有影响。我们的结果表明,椎管内铸型的形状受LSO影响,特别是在主要为树栖的鸟类中,其比例比其他运动类型的鸟类更大。我们还表明,骨盆形态与椎管形态显著协变。LSO比例较大对应较短、较宽的骨盆,而LSO较小则对应较长、较细长的骨盆。最后,除了椎管形态存在强烈的系统发育信号外,我们还识别出异速生长,表明体型大小也会影响LSO形态。

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