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成年有角甲虫中完全啮合的三维下颌齿轮状结构:对树皮雕刻行为的重新审视(鞘翅目,金龟科,犀金龟亚科)

Completely engaged three-dimensional mandibular gear-like structures in the adult horned beetles: reconsideration of bark-carving behaviors (Coleoptera, Scarabaeidae, Dynastinae).

作者信息

Ichiishi Wataru, Shimada Shinpei, Motobayashi Takashi, Abe Hiroaki

机构信息

Department of Biological Production, Faculty of Agriculture, Tokyo University of Agriculture and Technology, Saiwai-cho 3-5-3, Fuchu, Tokyo 183-8509, Japan Tokyo University of Agriculture and Technology Tokyo Japan.

出版信息

Zookeys. 2019 Jan 7(813):89-110. doi: 10.3897/zookeys.813.29236. eCollection 2019.

Abstract

Adult horned beetles (Coleoptera, Scarabaeidae, Dynastinae) such as (Linnaeus, 1771) exhibit bark-carving behaviors to feed on tree sap, in part by using small projections of the clypeus. However, in the present experiments, adult horned beetles ( and (Linnaeus, 1758)) used their mandibles and not the projections of the clypeus to carve bark. Our findings show the presence of completely engaged mandibular interlocking, gear-like surface structures in molar areas that guide mandible opening and closure, and lead to completely synchronous movements of adult horned beetle mandibles. Three-dimensional shapes of these mandibular gear-like structures are complex and remained in contact after the death of a beetle. Moreover, adult horned beetles often performed bark-carving behaviors using only the mandible of one side, suggesting that the primary role of the mandibular gear-like structure is to prevent breakage of the mandible by transmitting load from one mandible to the other. Among the 22 Dynastinae and 16 other beetle species examined (not Dynastinae), the gear-like structure was found in all the Dynastinae species and in no other species.

摘要

成年角甲虫(鞘翅目,金龟科,犀金龟亚科),如(林奈,1771年),会表现出树皮啃咬行为以取食树液,部分是通过使用唇基的小突起。然而,在目前的实验中,成年角甲虫(和(林奈,1758年))使用它们的上颚而不是唇基的突起进行树皮啃咬。我们的研究结果表明,在臼齿区域存在完全啮合的上颚互锁、齿轮状表面结构,这些结构引导上颚的张开和闭合,并导致成年角甲虫上颚完全同步运动。这些上颚齿轮状结构的三维形状很复杂,在甲虫死亡后仍保持接触。此外,成年角甲虫经常仅使用一侧的上颚进行树皮啃咬行为,这表明上颚齿轮状结构的主要作用是通过将负荷从一个上颚传递到另一个上颚来防止上颚断裂。在所检查的22种犀金龟亚科和16种其他甲虫物种(非犀金龟亚科)中,齿轮状结构在所有犀金龟亚科物种中都有发现,而在其他物种中均未发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/676c/6331513/c39a6610ac5f/zookeys-813-089-g001.jpg

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