Rib Motions Don't Completely Hinge on Joint Design: Costal Joint Anatomy and Ventilatory Kinematics in a Teiid Lizard, Salvator merianae (vol 1, oby004, 2019)

被引:0
作者
Capano, J. G.
Moritz, S.
Cieri, R. L.
Reveret, L.
Brainerd, E. L.
机构
[1] Department of Ecology and Evolutionary Biology, Brown University, Providence, 02906, RI
[2] Department of Biology, Community College of Rhode Island, Warwick, 02886, RI
[3] School of Biological Sciences, University of Utah, Salt Lake City, 84112, UT
[4] Inria Grenoble Rhone Alpes, 655 Avenue de l'Europe, Montbonnot-Saint-Martin
基金
美国国家科学基金会;
关键词
D O I
10.1093/iob/obz010
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Rib rotations contribute to lung ventilation in most extant amniotes. These rotations are typically described as bucket-handle rotation about a dorsoventral axis, caliper rotation about a craniocaudal axis, and pump-handle rotation about a mediolateral axis. A synapomorphy for Lepidosauria is single-headed costovertebral articulations derived from the ancestral double-headed articulations of most amniotes. With a single articular surface, the costovertebral joints of squamates have the potential to rotate with three degrees-of-freedom (DOFs), but considerable variation exists in joint shape. We compared the costovertebral morphology of the Argentine black and white tegu, Salvator merianae, with the green iguana, Iguana iguana, and found that the costovertebral articulations of I. iguana were hemispherical, while those of S. merianae were dorsoventrally elongated and hemiellipsoidal. We predicted that the elongate joints in S. merianae would permit bucket-handle rotations while restricting caliper and pump-handle rotations, relative to the rounded joints of I. iguana. We used X-ray reconstruction of moving morphology to quantify rib rotations during breathing in S. merianae for comparison with prior work in I. iguana. Consistent with our hypothesis, we found less caliper motion in S. merianae than in I. iguana, but unexpectedly found similar pump-handle magnitudes in each species. The dorsoventrally elongate costovertebral morphology of S. merianae may provide passive rib support to reduce the conflict between locomotion and ventilation. Moreover, the observation of multiple DOFs during rib rotations in both species suggests that permissive costovertebral morphology may be more related to the biological roles of ribs outside of ventilation and help explain the evolution of this trait. © 2018 The Author(s) 2018. Published by Oxford University Press on behalf of the Society for Integrative and Comparative Biology.
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页码:1 / 17
页数:1
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