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Antennal Development in the Praying Mantis (Tenodera aridifolia) Highlights Multitudinous Processes in Hemimetabolous Insect Species

机译:螳螂(Tenodera aridifolia)的触角发育突出了半代谢昆虫物种的众多过程。

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摘要

Insects possess antennae equipped with a large number of segments (flagellomeres) on which sensory organs (sensilla) are located. Hemimetabolous insects grow by molting until they reach adulthood. In these species, the sensory structures develop and mature during each stage of development; new flagellomeres are generated at each molt elongating the antennae, and new sensilla appear. The praying mantis (Tenodera aridifolia) is a hemimetabolous insect with 7 different instars before it reaches adulthood. Because their antennae are provided with an atypical sensillar distribution, we previously suggested that their antennae develop with a different mechanism to other hemimetaboulous insect species. In the present study, we measured the number, length and width of flagellomeres along the antennae in nymph and adult mantis Tenodera aridifolia. For this study, we developed a new and innovative methodology to reconstruct the antennal development based on the length of flagellomeres. We observed and confirmed that the antennae of mantises develop with the addition of new segments at two distinct sites. In addition, we constructed a complete database of the features of the flagellum for each stage of development. From our data, we found that sexual dimorphism appears from the 6 instar (larger number and wider flagellomeres in males) in accordance with the appearance of their genital apparatus. The antennal sexual dimorphism completes at adulthood with longer flagellomeres and the emergence of a huge number of grooved peg sensilla in males during the last molting, which suggests once again their function as sex-pheromone receptive sensilla.
机译:昆虫的触角配有大量节段(鞭毛),感觉器官(感官)位于其上。半代谢昆虫通过蜕皮生长直至成虫。在这些物种中,感觉结构在发育的每个阶段都会发育并成熟。在延伸触角的蜕皮上会产生新的鞭毛,并出现新的感觉。螳螂(Tenodera aridifolia)是一种半代谢昆虫,在成年前有7个不同的龄期。因为它们的触角具有非典型的感官分布,所以我们以前曾建议它们的触角以与其他半翅目昆虫种类不同的机制发育。在本研究中,我们测量了若虫和成年螳螂Tenodera aridifolia触角中鞭毛的数量,长度和宽度。对于这项研究,我们开发了一种新的创新方法,可根据鞭毛的长度重建触角发育。我们观察并确认,螳螂触角在两个不同的位置上添加了新的片段而得以发展。此外,我们针对每个开发阶段构建了鞭毛特征的完整数据库。从我们的数据中,我们发现,根据其生殖器的外表,六龄幼虫(男性中数量较多且鞭毛较宽)会出现性二态性。触角性二态性在成年期随着鞭毛的延长而完成,并且在最后一次蜕皮过程中在雄性中出现大量有沟纹的钉状感器,这再次表明了它们作为性信息素感受器的功能。

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