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测量和评估鱼类的形态不对称性:食鳞片慈鲷鱼下颚的明显侧向二态性。

Measuring and evaluating morphological asymmetry in fish: distinct lateral dimorphism in the jaws of scale-eating cichlids.

机构信息

Graduate School of Science and Engineering, Ehime University 2-5 Bunkyo, Matsuyama, Ehime, 790-8577, Japan.

Center for Ecological Research, Kyoto University 509-3, 2-chome, Hirano, Otsu, Shiga, 520-2113, Japan.

出版信息

Ecol Evol. 2013 Nov;3(14):4641-7. doi: 10.1002/ece3.849. Epub 2013 Oct 24.

Abstract

The left-right asymmetry of scale-eating Tanganyikan cichlids is described as a unilateral topographical shift of the quadratomandibular joints. This morphological laterality has a genetic basis and has therefore been used as a model for studying negative frequency-dependent selection and the resulting oscillation in frequencies of two genotypes, lefty and righty, in a population. This study aims were to confirm this laterality in Perissodus microlepis Boulenger and P. straeleni (Poll) and evaluate an appropriate method for measuring and testing the asymmetry. Left-right differences in the height of the mandible posterior ends (HMPE) and the angle between the neurocranium and vertebrae of P. microlepis and P. straeleni were measured on skeletal specimens. Snout-bending angle was also measured using a dorsal image of the same individuals following a previous method. To define which distribution model, fluctuating asymmetry (FA), directional asymmetry (DA), or antisymmetry (AS), best fit to the lateral asymmetry of the traits, we provided an R package, IASD. As a result, HMPE and neurocranium-vertebrae angle of both species were best fitted to AS, suggesting that P. microlepis and P. straeleni showed a distinct dimorphism in these traits, although snout-bending angle of P. microlepis was best fitted to FA. Measurement error was low for HMPE comparing the snout-bending angle in P. microlepis, indicating that measuring HMPE is a more accurate method. The scale-eating tribe Perissodini showed distinct antisymmetry in the jaw skeleton and neurocranium-vertebrae angle, and this laterality remains a valid marker for further evolutionary studies.

摘要

坦干伊喀慈鲷的左右不对称性被描述为四边形-颌关节的单侧地形移位。这种形态的偏侧性有遗传基础,因此被用作研究负频率依赖性选择和由此导致的两种基因型(lef ty 和 right y)在种群中频率波动的模型。本研究旨在证实 Perissodus microlepis Boulenger 和 P. straeleni (Poll) 的这种偏侧性,并评估一种合适的测量和检验不对称性的方法。在骨骼标本上测量了 P. microlepis 和 P. straeleni 的下颌后端高度(HMPE)和颅神经与脊椎之间的角度的左右差异。还按照以前的方法,使用同一个体的背侧图像测量了歪嘴角度。为了确定哪种分布模型(波动不对称性(FA)、定向不对称性(DA)或反对称性(AS))最适合这些特征的侧向不对称性,我们提供了一个 R 包,IASD。结果表明,HMPE 和两种物种的颅神经-脊椎角最适合 AS,表明 P. microlepis 和 P. straeleni 在这些特征上表现出明显的二态性,尽管 P. microlepis 的歪嘴角度最适合 FA。与 P. microlepis 的歪嘴角度相比,HMPE 的测量误差较低,表明测量 HMPE 是一种更准确的方法。食鳞鱼族 Perissodini 在颌骨骨骼和颅神经-脊椎角上表现出明显的反对称性,这种偏侧性仍然是进一步进化研究的有效标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b1b/3867900/83f96d2449b6/ece30003-4641-f1.jpg

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