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石蝇(Dinocras cephalotes)(襀翅目:石蝇科)的触角感器

Antennal sensilla of the stonefly Dinocras cephalotes (Plecoptera: Perlidae).

作者信息

Rebora Manuela, Tierno de Figueroa José Manuel, Piersanti Silvana

机构信息

Dipartimento di Chimica, Biologia e Biotecnologie, University of Perugia, 06121, Italy.

Departamento de Zoología, Facultad de Ciencias, Universidad de Granada, 18071, Granada, Spain.

出版信息

Arthropod Struct Dev. 2016 Nov;45(6):552-561. doi: 10.1016/j.asd.2016.10.009. Epub 2016 Oct 22.

Abstract

Plecoptera, one of the most primitive groups of Neoptera, are important aquatic insects usually employed as bioindicators of high water quality. Notwithstanding the well-developed antennae of the adult, its sensory abilities are so far not well known. The present paper describes at ultrastructural level under scanning and transmission electron microscopy the antennal sensilla of the adult stonefly Dinocras cephalotes (Plecoptera, Perlidae). Adult males and females show a filiform antenna constituted of a scape, a pedicel and a flagellum composed of very numerous segments with no clear sexual dimorphism in the number and distribution of the antennal sensilla. The most represented sensilla are sensilla trichodea, with different length, whose internal structure reveal their mechanosensory function, sensilla chaetica, with an apical pore, with an internal structure revealing a typical gustatory function, porous pegs representing single-walled olfactory sensilla, digitated pegs with hollow cuticular spoke channels representing double-walled olfactory sensilla, pegs in pits for which we hypothesize a thermo-hygrosensory function. The diversity of described sensilla is discussed in relation to known biological aspects of the studied species. This opens new perspectives in the study of the behavior of these aquatic insects during their adult stage.

摘要

襀翅目昆虫是新翅类最原始的类群之一,是重要的水生昆虫,通常用作高水质的生物指示物种。尽管成虫的触角发育良好,但其感官能力迄今仍不太清楚。本文在扫描电子显微镜和透射电子显微镜下,从超微结构水平描述了成年石蝇 Dinocras cephalotes(襀翅目,卷襀科)的触角感器。成年雄性和雌性均具有丝状触角,由柄节、梗节和鞭节组成,鞭节由许多节段构成,触角感器的数量和分布没有明显的性别二态性。数量最多的感器是不同长度的毛形感器,其内部结构显示出它们的机械感觉功能;具毛感器,顶端有孔,其内部结构显示出典型的味觉功能;多孔栓代表单壁嗅觉感器;具指状栓,有中空的表皮辐条通道,代表双壁嗅觉感器;凹坑中的栓,我们推测其具有温湿度感觉功能。结合所研究物种已知的生物学特性,对所描述的感器多样性进行了讨论。这为研究这些水生昆虫成虫阶段的行为开辟了新的视角。

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