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水生昆虫幼虫的触角感器

Larval antennal sensilla in water-living insects.

作者信息

Gaino E, Rebora M

机构信息

Dipartimento di Biologia Animale ed Ecologia, 06123 Perugia, Italy.

出版信息

Microsc Res Tech. 1999 Dec 15;47(6):440-57. doi: 10.1002/(SICI)1097-0029(19991215)47:6<440::AID-JEMT7>3.0.CO;2-O.

Abstract

An overview of larval antennal sensilla in hemimetabolous and holometabolous water-living insects is given by updating current knowledge on the fine structure of these sensory systems. In the absence of successful electrophysiological studies, the possible function of sensilla is deduced from their architecture. Various kinds of sensilla are described in hemimetabolous insects, such as Ephemeroptera, Odonata, and Plecoptera, and holometabolous insects, such as Diptera Nematocera (Culicidae, Simuliidae, Psychodidae, Chaoboridae) and Trichoptera. Their possible function in responding to stimuli from the freshwater environment is illustrated and discussed. The importance of sensilla as taxonomic and phylogenetic traits is reported in Baetidae (Ephemeroptera) and in Diptera Nematocera. Some homologies outlined in Diptera Nematocera give evidence of a link between species, such as Chaoboridae and Psychodidae, whose antennae are highly modified, prehensile in the former and very reduced in the latter. Particular features, such as cuticle without pores in chemosensory sensilla and naked perikarya, are so far found exclusively in some water-living arthropods, thus reflecting a possible adaptation to the aquatic habitat. The structure of sensilla and chloride cells, which have a similar external morphology, is presented and discussed in various insect groups, considering the possible derivation of the chloride cells from sensilla.

摘要

通过更新这些感觉系统精细结构的现有知识,对不完全变态和完全变态水生昆虫幼虫触角感器进行了概述。在缺乏成功的电生理研究的情况下,从感器的结构推断其可能的功能。描述了多种不完全变态昆虫(如蜉蝣目、蜻蜓目和襀翅目)和完全变态昆虫(如有翅亚纲双翅目长角亚目(蚊科、蚋科、毛蠓科、摇蚊科)和毛翅目)中的感器。阐述并讨论了它们在响应淡水环境刺激时可能的功能。在襀翅目(蜉蝣目)和双翅目长角亚目中报道了感器作为分类学和系统发育特征的重要性。双翅目长角亚目中概述的一些同源性证明了某些物种之间的联系,如摇蚊科和毛蠓科,前者的触角高度特化,具有抓握功能,而后者的触角则非常退化。到目前为止,在一些水生节肢动物中仅发现了特殊特征,如化学感受感器中无孔的角质层和裸露的神经核,这反映了对水生栖息地的一种可能适应。考虑到氯细胞可能起源于感器,在各种昆虫类群中展示并讨论了感器和氯细胞的结构,它们具有相似的外部形态。

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