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总反冲力:栖木顺应性改变了绿安乐蜥(Anolis carolinensis)的跳跃性能和运动学。

Total recoil: perch compliance alters jumping performance and kinematics in green anole lizards (Anolis carolinensis).

机构信息

Graduate Program in Organismic and Evolutionary Biology, University of Massachusetts Amherst, Amherst, MA 01003, USA.

出版信息

J Exp Biol. 2012 Jan 15;215(Pt 2):220-6. doi: 10.1242/jeb.061838.

Abstract

Jumping is a common form of locomotion for many arboreal animals. Many species of the arboreal lizard genus Anolis occupy habitats in which they must jump to and from unsteady perches, e.g. narrow branches, vines, grass and leaves. Anoles therefore often use compliant perches that could alter jump performance. In this study we conducted a small survey of the compliance of perches used by the arboreal green anole Anolis carolinensis in the wild (N=54 perches) and then, using perches within the range of compliances used by this species, investigated how perch compliance (flexibility) affects the key jumping variables jump distance, takeoff duration, takeoff angle, takeoff speed and landing angle in A. carolinensis in the laboratory (N=11). We observed that lizards lost contact with compliant horizontal perches prior to perch recoil, and increased perch compliance resulted in decreased jump distance and takeoff speed, likely because of the loss of kinetic energy to the flexion of the perch. However, the most striking effect of perch compliance was an unexpected one; perch recoil following takeoff resulted in the lizards being struck on the tail by the perch, even on the narrowest perches. This interaction between the perch and the tail significantly altered body positioning during flight and landing. These results suggest that although the use of compliant perches in the wild is common for this species, jumping from these perches is potentially costly and may affect survival and behavior, particularly in the largest individuals.

摘要

跳跃是许多树栖动物的一种常见运动形式。许多树栖蜥蜴属的物种栖息在必须从不稳定的栖木(例如,狭窄的树枝、藤蔓、草和树叶)上跳跃的环境中。因此,蜥蜴通常会使用具有适应性的栖木,这可能会改变跳跃性能。在这项研究中,我们对野外的树栖绿鬣蜥(Anolis carolinensis)使用的适应性栖木进行了小型调查(N=54 个栖木),然后,在该物种使用的适应性范围内,我们研究了适应性(柔韧性)如何影响关键跳跃变量,包括在实验室中的跳跃距离、起飞持续时间、起飞角度、起飞速度和着陆角度(N=11)。我们观察到,蜥蜴在栖木反冲之前就与适应性水平的水平栖木失去了接触,而增加栖木适应性会导致跳跃距离和起飞速度下降,这可能是因为动能被栖木的弯曲消耗了。然而,适应性栖木最显著的影响是出乎意料的;起飞后栖木的反冲会导致蜥蜴的尾巴被栖木击中,即使是在最窄的栖木上也是如此。这种栖木和尾巴之间的相互作用在飞行和着陆过程中显著改变了身体的位置。这些结果表明,尽管该物种在野外普遍使用适应性栖木,但从这些栖木上跳跃可能是有代价的,并且可能会影响生存和行为,特别是在最大的个体中。

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