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Feeding behaviour in a ‘basal’ tortoise provides insights on the transitional feeding mode at the dawn of modern land turtle evolution

机译:在陆龟中觅食的行为为现代陆龟进化之初的过渡性觅食模式提供了见解

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摘要

Almost all extant testudinids are highly associated with terrestrial habitats and the few tortoises with high affinity to aquatic environments are found within the genus Manouria. Manouria belongs to a clade which forms a sister taxon to all remaining tortoises and is suitable as a model for studying evolutionary transitions within modern turtles. We analysed the feeding behaviour of Manouria emys and due to its phylogenetic position, we hypothesise that the species might have retained some ancestral features associated with an aquatic lifestyle. We tested whether M. emys is able to feed both in aquatic and terrestrial environments. In fact, M. emys repetitively tried to reach submerged food items in water, but always failed to grasp them—no suction feeding mechanism was applied. When feeding on land, M. emys showed another peculiar behaviour; it grasped food items by its jaws—a behaviour typical for aquatic or semiaquatic turtles—and not by the tongue as generally accepted as the typical feeding mode in all tortoises studied so far. In M. emys, the hyolingual complex remained retracted during all food uptake sequences, but the food transport was entirely lingual based. The kinematical profiles significantly differed from those described for other tortoises and from those proposed from the general models on the function of the feeding systems in lower tetrapods. We conclude that the feeding behaviour of M. emys might reflect a remnant of the primordial condition expected in the aquatic ancestor of the tortoises.
机译:几乎所有现存的睾丸类动物都与陆地生境高度相关,而在马努里亚属中发现了几只对水生环境具有高度亲和力的乌龟。马努里亚属于进化枝,是所有其余乌龟的姊妹分类群,适合作为研究现代海龟进化过渡的模型。我们分析了Manouria y的摄食行为,并且由于其系统发育位置,我们假设该物种可能保留了与水生生活方式相关的某些祖先特征。我们测试了梅氏疟原虫是否能够在水生和陆地环境中觅食。实际上,艾美氏菌反复尝试将淹没的食物伸入水中,但始终无法抓住它们-没有应用吸食机制。当在陆地上觅食时,艾美依斯人表现出另一种独特的行为。它用颚抓食物(这是水生或半水生乌龟的典型行为),而不是用舌头抓取食物,到目前为止,在所有研究过的乌龟中,舌头都不是通常的喂养方式。在M. emys,所有食物摄取过程中,透明质复合物都保持收缩,但是食物的运输完全基于语言。运动学特征与其他乌龟描述的运动特征以及在四足动物下部进食系统功能的一般模型提出的运动特征明显不同。我们得出的结论是,M。Emys的摄食行为可能反映了陆龟水生祖先预期的原始条件的残留。

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