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中华大刀螳触角感器:基于触角宏观、微观及超微结构的新鞭节划分

The antennal sensilla of the praying mantis Tenodera aridifolia: a new flagellar partition based on the antennal macro-, micro- and ultrastructures.

作者信息

Carle Thomas, Toh Yoshihiro, Yamawaki Yoshifumi, Watanabe Hidehiro, Yokohari Fumio

机构信息

Division of Biology, Department of Earth System Science, Faculty of Science, Fukuoka University, Fukuoka 814-0180, Japan.

Department of Biology, Faculty of Science, Kyushu University, Fukuoka 812-8581, Japan.

出版信息

Arthropod Struct Dev. 2014 Mar;43(2):103-16. doi: 10.1016/j.asd.2013.10.005. Epub 2013 Nov 12.

Abstract

In insects, the antenna consists of a scapus, a pedicellus, and a flagellum comprising many segments (flagellomeres). These segments possess many morphological types of sensory organs (sensilla) to process multimodal sensory information. We observed the sensilla on flagellomeres in praying mantis (Tenodera aridifolia) with both scanning and transmission electron microscopes. We classified the sensilla into six types: chaetic, campaniform, coelocapitular, basiconic, trichoid and grooved peg sensilla, and inferred their presumptive functions on the basis of their external and internal structures. In addition, based on their distribution, we newly divided the flagellum into 6 distinct parts. This new division leads to a better understanding about the sexual dimorphism and the antennal development in the mantises. The sexual difference in distribution of the grooved peg sensilla suggests that this type of sensilla may play a role in sex-pheromone detection in mantis, which is a rare case of double-walled sensilla mediating this function.

摘要

在昆虫中,触角由柄节、梗节和包含许多节段(鞭节)的鞭组成。这些节段拥有多种形态类型的感觉器官(感器)来处理多模态感官信息。我们用扫描电子显微镜和透射电子显微镜观察了螳螂(中华大刀螳)鞭节上的感器。我们将感器分为六种类型:毛形、钟形、腔锥形、锥形、刚毛形和槽形栓锥感器,并根据它们的外部和内部结构推断其假定功能。此外,根据它们的分布,我们将鞭重新划分为6个不同的部分。这一新的划分有助于更好地理解螳螂的两性异形和触角发育。槽形栓锥感器分布的性别差异表明,这种类型的感器可能在螳螂的性信息素检测中发挥作用,这是双壁感器介导该功能的罕见例子。

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