首页> 外文期刊>Micron: The international research and review journal for microscopy >Functional structure of antennal sensilla in the myrmecophilous beetle Paussus favieri (Coleoptera, Carabidae, Paussini)
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Functional structure of antennal sensilla in the myrmecophilous beetle Paussus favieri (Coleoptera, Carabidae, Paussini)

机译:嗜冷甲虫Paussus favieri(鞘翅目,甲足目,Paussini)触角感应器的功能结构

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摘要

The evolution of a myrmecophilous lifestyle in beetles is often associated with morphological alterations. In particular, the antennae of all members of the myrmecophilous ground beetle tribe Paussini are greatly modified, with flagellomeres flattened or crassate, frequently reduced in number from 9 to 5 or even 1 single "antennal club". The enhanced glandular function of the antennal club has been recently described by scanning (SEM) and transmission (TEM) electron microscopy in Paussusfavieri Fairmaire, 1851, where the antenna has become a complex glandular organ, supplying rewarding substances to the ants. In the present work, the antennal sensilla of P. favieri are investigated by SEM, TEM and focused ion beam (FIB/SEM) technology. Most sensilla of scape and antennal club are highly modified mechanoreceptors (i.e. multipointed, fringed, branched, brush-like, sickle-shaped), singly or grouped in tufts ("antennal symphilous organs"). These "trichomes", here assigned to 8 different morphotypes of sensilla chaetica (Ch.1-Ch.8), show a variable number of basal pores (present also at the base of the taste sensilla Ch.9), which spread dense substances of unknown chemical composition on the seta. Although hygro-, thermo- and chemoreceptors are reduced in number as compared with non-myrmecophilous relatives, and mainly relegated to the apex of the antennal club, their diversity is comparable to that of other carabid beetles: two types of sensilla trichodea (Tr.1-Tr.2); three types of basiconica (Ba.1-Ba.3); one type of campaniformia (Ca); one type of coeloconica (Co) and one type of Bohm sensilla (Bo). Contrary to the hypothesis that Paussus species lack a Johston's organ, a non-connective chordotonal organ composed of 9 groups of scolopidia has been found inside the pedicel. A comparison between sensilla of P.favieri and those of other non-myrmecophilous and myrmecophilous ground beetle species is provided.
机译:甲虫常温性生活方式的演变通常与形态变化有关。尤其是,嗜温性甲虫部落Paussini的所有成员的触角都得到了很大的修改,鞭毛扁平或具刺毛,通常数量从9个减少到5个,甚至只有1个“天线俱乐部”。最近在1851年的Paussusfavieri Fairmaire中通过扫描(SEM)和透射(TEM)电子显微镜描述了触角棍的增强的腺体功能,其中天线已成为复杂的腺体器官,为蚂蚁提供了奖励物质。在目前的工作中,通过SEM,TEM和聚焦离子束(FIB / SEM)技术研究了P. favieri的触角感觉。花scape和触角俱乐部的大多数感官是高度修饰的机械感受器(即多点,有条纹,分支,刷状,镰刀状),单独或成簇(簇状)。这些“毛状体”,在这里被分配为八种不同的感官意识形态(Ch.1-Ch.8),显示出数量不定的基础孔(也存在于味觉感官Ch.9的基部),散布着稠密的物质刚毛的化学成分未知。尽管与非嗜温性亲戚相比,吸湿,感热和化学感受器的数量有所减少,并且主要降落到触角俱乐部的顶点,但它们的多样性可与其他甲壳虫相提并论:两种类型的感性三色线虫(Tr。 1-Tr.2);三种类型的碱性(Ba.1-Ba.3);一种类型的弯曲杆菌(Ca);一种是洋芋(Co),另一种是鲍氏感觉(Bo)。与Paussus物种缺乏Johston器官的假说相反,在花梗内部发现了由9个硬皮鳞茎组成的非结缔合弦状器官。提供了P.favieri的感官与其他非常温和常温地面甲虫物种的感官之间的比较。

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