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首页> 外文期刊>Journal of Comparative Physiology A >Ants swimming in pitcher plants: kinematics of aquatic and terrestrial locomotion in Camponotus schmitzi
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Ants swimming in pitcher plants: kinematics of aquatic and terrestrial locomotion in Camponotus schmitzi

机译:蚂蚁在水罐里游泳:Camponotus schmitzi的水生和陆生运动学

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摘要

Camponotus schmitzi ants live in symbiosis with the Bornean pitcher plant Nepenthes bicalcarata. Unique among ants, the workers regularly dive and swim in the pitcher’s digestive fluid to forage for food. High-speed motion analysis revealed that C. schmitzi ants swim at the surface with all legs submerged, with an alternating tripod pattern. Compared to running, swimming involves lower stepping frequencies and larger phase delays within the legs of each tripod. Swimming ants move front and middle legs faster and keep them more extended during the power stroke than during the return stroke. Thrust estimates calculated from three-dimensional leg kinematics using a blade-element approach confirmed that forward propulsion is mainly achieved by the front and middle legs. The hind legs move much less, suggesting that they mainly serve for steering. Experiments with tethered C. schmitzi ants showed that characteristic swimming movements can be triggered by submersion in water. This reaction was absent in another Camponotus species investigated. Our study demonstrates how insects can use the same locomotory system and similar gait patterns for moving on land and in water. We discuss insect adaptations for aquatic/amphibious lifestyles and the special adaptations of C. schmitzi to living on an insect-trapping pitcher plant.
机译:Camponotus schmitzi蚂蚁与婆罗洲的捕虫草植物Nicalhes bicalcarata共生。工蚁在蚂蚁中独树一帜,经常在投手的消化液中潜水和游泳以觅食。高速运动分析表明,施密茨氏蚂蚁在水面游动,所有腿都被淹没,并形成了交替的三脚架模式。与跑步相比,游泳在每个三脚架的腿部内具有较低的步进频率和较大的相位延迟。与回程期间相比,游泳蚂蚁使前腿和中腿运动得更快,并使它们在伸展运动中的伸展度更大。使用叶片单元方法从三维腿部运动学计算得出的推力估算值证实,向前推进主要由前腿和中腿实现。后腿的移动少得多,表明它们主要用于转向。系留施氏梭菌的实验表明,浸入水中可以触发独特的游泳动作。在另一个Camponotus物种中不存在该反应。我们的研究表明,昆虫如何在陆地和水中移动时使用相同的运动系统和类似的步态模式。我们讨论了针对水生/两栖生活方式的昆虫适应性以及施密特·施密茨(C. schmitzi)对捕虫笼中生活的特殊适应性。

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