Suppr超能文献

蝎子栉状器——独特的化学和机械感觉器官。

Scorpions pectines - Idiosyncratic chemo- and mechanosensory organs.

作者信息

Wolf Harald

机构信息

Stellenbosch Institute for Advanced Study, Wallenberg Research Centre, 10 Marais Street, Stellenbosch 7600, South Africa.

出版信息

Arthropod Struct Dev. 2017 Nov;46(6):753-764. doi: 10.1016/j.asd.2017.10.002. Epub 2017 Oct 27.

Abstract

Scorpions possess specialised chemosensory appendages, the pectines. These comb-shaped limbs are located ventrally behind the walking legs. Like the antennae of mandibulate arthropods, they also serve a mechanosensory function. However, more than 90% of the sometimes well above 100,000 sensory neurons projecting from a pectine to the central nervous system are chemosensory. There are two primary projection neuropils. The posterior one, immediately adjacent to the pectine nerve entrance, has an intriguing substructure reminiscent of the olfactory glomeruli observed in the primary chemosensory neuropils of many arthropods and indeed of most bilaterian animals. There are further similarities, particularly to the antennal lobes of mandibulate arthropods, including dense innervation by a relatively small number of putative serotonergic interneurons and the presence of GABA immunoreactivity, indicative of inhibitory interactions. Scorpion idiosyncrasies include the flattened shape and broad size range of the glomerulus-like neuropil compartments. Further, these compartments are often not clearly delimited and form layers in the neuropil that are arranged like onion peels. In summary, the pectine appendages of scorpions and their central nervous projections appear as promising study subjects, particularly regarding comparative examination of chemosensory representation and processing strategies. The possibility of combined, rather than discrete, representations of chemo- and mechanosensory inputs should merit further study.

摘要

蝎子拥有特殊的化学感应附器——栉状器。这些梳状附肢位于步足后方的腹侧。与咀嚼式节肢动物的触角一样,它们也具有机械感应功能。然而,从栉状器投射到中枢神经系统的有时远超10万个感觉神经元中,超过90%是化学感应神经元。有两个主要的投射神经纤维网。后一个紧邻栉状器神经入口,具有一种有趣的亚结构,让人联想到在许多节肢动物以及实际上大多数两侧对称动物的初级化学感应神经纤维网中观察到的嗅觉小球。还有更多相似之处,特别是与咀嚼式节肢动物的触角叶,包括相对少量假定的5-羟色胺能中间神经元的密集支配以及γ-氨基丁酸免疫反应性的存在,这表明存在抑制性相互作用。蝎子的独特之处包括肾小球状神经纤维网隔室的扁平形状和广泛的大小范围。此外,这些隔室通常没有明显的界限,在神经纤维网中形成像洋葱皮一样排列的层。总之,蝎子的栉状附肢及其中枢神经投射似乎是很有前景的研究对象,特别是在化学感应表征和处理策略的比较研究方面。化学和机械感应输入的联合而非离散表征的可能性值得进一步研究。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验