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麻皮蝽触角鞭节感器结构的功能简化研究(半翅目:蝉科:沫蝉科)

The sensory structures of the antennal flagellum in Hyalesthes obsoletus (Hemiptera: Fulgoromorpha: Cixiidae): a functional reduction?

机构信息

Dipartimento di Scienze Agrarie e Ambientali, Perugia University, 06121 Perugia, Italy.

出版信息

Arthropod Struct Dev. 2009 Nov;38(6):473-83. doi: 10.1016/j.asd.2009.08.002. Epub 2009 Sep 15.

Abstract

Despite their relevance as harmful pests on plants of economic importance, Hemiptera Fulgoromorpha have been poorly studied as regards their antennal sensory structures. In particular, the flagellum has been neglected and, therefore, to date there are no data on its structural organization and sensory equipment. In order to fill this gap, we carried out a study on the sensillum types and distribution on the flagellum of the planthopper Hyalesthes obsoletus Signoret, an efficient vector of the stolbur phytoplasma, the cause of various crop diseases. In this cixiid species the antenna is composed of three segments, the scape, an enlarged pedicel and a long flagellum. This latter is made of a single segment and presents a basal, bulb-like enlargement from which two processes arise, a short spur and a long arista. Combining scanning electron microscopy, transmission electron microscopy and focused ion beam investigations, we discovered the presence of a total number of 6 sensilla, belonging to 4 different types: a single scolopidium extending from the bulb to the arista, three sensilla styloconica within the cuticular spur and two different sensilla coeloconica inside the bulb. As far as structural data can suggest, these sensilla might be involved in the perception of mechanical stimuli (possibly air-borne vibrations), temperature and humidity variations and CO(2) concentration. The strong reduction in sensillum number in this species is discussed as possible functional specialization of the flagellum itself. The ultrastructure of the sensilla in the flagellum of a species of Fulgoromorpha is here presented for the first time.

摘要

尽管半翅目沫蝉总科昆虫在经济植物上是有害的害虫,但它们的触角感觉结构的研究还很不完善。特别是触角鞭节一直被忽视,因此,迄今为止,关于其结构组织和感觉器官还没有数据。为了填补这一空白,我们对半翅目沫蝉科的沫蝉 Hyalesthes obsoletus Signoret 的触角感觉类型及其分布进行了研究,该沫蝉是 stolbur 植原体的有效载体,stolbur 植原体是多种作物病害的原因。在这种沫蝉中,触角由三个部分组成,即梗节、膨大的柄节和长的鞭节。鞭节由一个单一的节组成,在基部有一个球根状的扩大,从这个扩大处长出两个突起,一个短的刺突和一个长的触角。通过扫描电子显微镜、透射电子显微镜和聚焦离子束研究,我们发现了总共 6 种感觉器,属于 4 种不同的类型:一个从球根延伸到触角的单个刺状感器,在角质刺内的 3 个感觉锥状感器和在球根内的 2 个不同的感觉腔锥状感器。就结构数据而言,这些感觉器可能参与了对机械刺激(可能是空气传播的振动)、温度和湿度变化以及 CO(2)浓度的感知。在这个物种中感觉器数量的强烈减少被认为是触角本身功能特化的可能原因。本文首次呈现了沫蝉科一种沫蝉的触角鞭节感觉器的超微结构。

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