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在蛇蜥类中,横跨宏观进化尺度的大脑比较解剖学研究表明,蛇类具有一种保守的模式。

Brain Allometry Across Macroevolutionary Scales in Squamates Suggests a Conserved Pattern in Snakes.

机构信息

Programa de Maestría en Ciencias Biológicas, Vicerrectoría de Investigación y Postgrado, Universidad de Panamá, Avenida Simón Bolívar, Panama City, Panama, Apartado 3366 Panama 4, Panama; Departamento de Fisiología y Comportamiento Animal, Escuela de Biología, Facultad de Ciencias Naturales, Exactas y Tecnología, Universidad de Panamá, Avenida Simón Bolívar, Panama City, Panama, Apartado 3366 Panama 4, Panama.

Departamento de Fisiología y Comportamiento Animal, Escuela de Biología, Facultad de Ciencias Naturales, Exactas y Tecnología, Universidad de Panamá, Avenida Simón Bolívar, Panama City, Panama, Apartado 3366 Panama 4, Panama.

出版信息

Zoology (Jena). 2021 Jun;146:125926. doi: 10.1016/j.zool.2021.125926. Epub 2021 Apr 20.

Abstract

Despite historical interest in brain size evolution in vertebrates, few studies have assessed variation in brain size in squamate reptiles such as snakes and lizards. Here, we analyzed the pattern of brain allometry at macroevolutionary scale in snakes and lizards, using body mass and snout vent length as measures of body size. We also assessed potential energetic trade-offs associated with relative brain size changes in Crotalinae vipers. Body mass showed a conserved pattern of brain allometry across taxa of snakes, but not in lizards. Body length favored changes of brain allometry in both snakes and lizards, but less variability was observed in snakes. Moreover, we did not find evidence for trade-offs between brain size and the size of other organs in Crotalinae. Thus, despite the contribution of body elongation to changes in relative brain size in squamate reptiles, snakes present low variation in brain allometry across taxa. Although the mechanisms driving this conserved pattern are unknown, we hypothesize that the snake body plan plays an important role in balancing the energetic demands of brain and body size increase at macroevolutionary scales. We encourage future research on the evolution of brain and body size in snakes to test this hypothesis.

摘要

尽管人们对脊椎动物大脑大小的进化历史很感兴趣,但很少有研究评估过蛇类和蜥蜴等爬行动物的大脑大小变化。在这里,我们使用体质量和吻肛长作为身体大小的度量,分析了蛇类和蜥蜴类在宏观进化尺度上大脑比例的变化模式。我们还评估了与响尾蛇科蝮蛇的相对脑大小变化相关的潜在能量权衡。体质量在蛇类的各个分类群中表现出大脑比例的保守模式,但在蜥蜴中没有。体长有利于蛇类和蜥蜴类大脑比例的变化,但在蛇类中观察到的变化较小。此外,我们没有发现响尾蛇科蝮蛇的脑大小与其他器官大小之间存在权衡的证据。因此,尽管身体延长对蜥蜴类爬行动物相对脑大小的变化有贡献,但蛇类在分类群之间的大脑比例变化很小。虽然驱动这种保守模式的机制尚不清楚,但我们假设蛇的身体结构在平衡大脑和身体大小在宏观进化尺度上的能量需求方面发挥了重要作用。我们鼓励未来对蛇类大脑和身体大小的进化进行研究,以验证这一假设。

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