Manger P R, Keast J R, Pettigrew J D, Troutt L
Vision, Touch and Hearing Research Centre, Department of Physiology and Pharmacology, Brisbane, Queensland, Australia.
Philos Trans R Soc Lond B Biol Sci. 1998 Jul 29;353(1372):1159-70. doi: 10.1098/rstb.1998.0273.
The electroreceptors located in the bill skin of the platypus are modified secretory glands. The electroreceptive nerve terminals form bare endings in close proximity to the duct of these glands. In this study, we describe the autonomic innervation of the glands and a separate specialized autonomic innervation of the epidermal portion of the glandular duct. A range of immunohistochemical labels showed that the gland cells of the electroreceptors have a non-noradrenergic (putative parasympathetic) innervation. Phalloidin labelling revealed a 'sphincter' of epidermal luminal cells that labelled strongly for actin. These actin-dense keratinocytes were seen to have a noradrenergic (putative sympathetic) innervation. Fine-diameter sensory fibres containing substance P (presumably C-fibre thermoreceptors or polymodal nociceptors) were observed to terminate in the superficial epidermis surrounding the pore of the gland. When the bill of the platypus is dry these pores were closed. However, when room temperature water was washed over the bill, the pores opened. It is proposed that this autonomic and sensory innervation, along with the actin sphincter, mediates the opening and closing of the pores. By doing this, the platypus prevents the desiccation of the bare electrosensory nerve terminals when it is out of the water, and it may also be a way to regulate the impedance of the internal electrical circuit presented to the water at the pores.
鸭嘴兽喙部皮肤中的电感受器是经过改造的分泌腺。电感受神经末梢在这些腺体导管附近形成裸露的末梢。在本研究中,我们描述了这些腺体的自主神经支配以及腺体导管表皮部分独特的专门自主神经支配。一系列免疫组织化学标记显示,电感受器的腺细胞具有非去甲肾上腺素能(推测为副交感神经)支配。鬼笔环肽标记显示,表皮管腔细胞形成了一个“括约肌”,其肌动蛋白标记强烈。这些富含肌动蛋白的角质形成细胞具有去甲肾上腺素能(推测为交感神经)支配。观察到含有P物质的细径感觉纤维(可能是C纤维温度感受器或多模式伤害感受器)终止于腺体孔周围的浅表表皮。当鸭嘴兽的喙干燥时,这些孔是关闭的。然而,当用室温的水冲洗喙时,这些孔会打开。有人提出,这种自主神经和感觉神经支配,连同肌动蛋白括约肌,介导了孔的开闭。通过这样做,鸭嘴兽在离开水时可防止裸露的电感觉神经末梢干燥,这也可能是一种调节孔处呈现给水的内部电路阻抗的方式。