3D reconstruction of larval and adult brain neuropils of two giant silk moth species: Hyalophora cecropia and Antheraea pernyi

IF 2.3 2区 农林科学 Q1 ENTOMOLOGY
Hana Sehadová , Šárka Podlahová , Steven M. Reppert , Ivo Sauman
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引用次数: 1

Abstract

We present a detailed analysis of the brain anatomy of two saturniid species, the cecropia silk moth, Hyalophora cecropia, and the Chinese oak silk moth, Antheraea pernyi, including 3D reconstructions of the major brain neuropils in the larva and in male and female adults. The 3D reconstructions, prepared from high-resolution optical sections, showed that the corresponding neuropils of these saturniid species are virtually identical. Similarities between the two species include a pronounced sexual dimorphism in the adults in the form of a male-specific assembly of markedly enlarged glomeruli forming the so-called macroglomerular complex. From the reports published to date, it can be concluded that the neuropil architecture of saturniids resembles that of other nocturnal moths, including the sibling family Sphingidae. In addition, compared with previous anatomical data on diurnal lepidopteran species, significant differences were observed in the two saturniid species, which include the thickness of the Y-tract of the mushroom body, the size of the main neuropils of the optic lobes, and the sexual dimorphisms of the antennal lobes.

Abstract Image

两种巨大蚕蛾幼虫和成虫脑神经膜的三维重建:透明唇蛾和柞蚕
我们详细分析了两种土星物种,即盲肠丝蛾(Hyalophora cecropia)和中国橡树丝蛾(Anthraea pernyi)的大脑解剖结构,包括幼虫和雄性和雌性成虫主要脑神经膜的3D重建。根据高分辨率光学切片制作的3D重建显示,这些土星物种对应的神经膜几乎完全相同。这两个物种之间的相似之处包括,在成年人中,以明显增大的肾小球的雄性特异性组装形式存在明显的两性异形,形成所谓的大肾小球复合体。根据迄今为止发表的报告,可以得出结论,土星类的神经纤毛结构与其他夜蛾相似,包括其兄弟家族鞘翅目。此外,与以前关于昼行鳞翅目物种的解剖数据相比,在这两个土星物种中观察到了显著的差异,包括蘑菇体Y道的厚度、视叶主要神经膜的大小以及触角叶的性异形。
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来源期刊
Journal of insect physiology
Journal of insect physiology 生物-昆虫学
CiteScore
4.50
自引率
4.50%
发文量
77
审稿时长
57 days
期刊介绍: All aspects of insect physiology are published in this journal which will also accept papers on the physiology of other arthropods, if the referees consider the work to be of general interest. The coverage includes endocrinology (in relation to moulting, reproduction and metabolism), pheromones, neurobiology (cellular, integrative and developmental), physiological pharmacology, nutrition (food selection, digestion and absorption), homeostasis, excretion, reproduction and behaviour. Papers covering functional genomics and molecular approaches to physiological problems will also be included. Communications on structure and applied entomology can be published if the subject matter has an explicit bearing on the physiology of arthropods. Review articles and novel method papers are also welcomed.
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