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蚰蜒(多足纲)的触角柄节器官以及一种整合了弦音器成分的新型节肢动物端孔感觉器。

The antennal scape organ of Scutigera coleoptrata (Myriapoda) and a new type of arthropod tip-pore sensilla integrating scolopidial components.

作者信息

Sombke Andy, Rosenberg Jörg, Hilken Gero, Müller Carsten H G

机构信息

Department of Evolutionary Biology, University of Vienna, Djerassiplatz 1, 1030, Vienna, Austria.

, Soest, Germany.

出版信息

Front Zool. 2021 Nov 4;18(1):57. doi: 10.1186/s12983-021-00442-9.

Abstract

BACKGROUND

Centipedes are terrestrial, predatory arthropods with specialized sensory organs. However, many aspects of their sensory biology are still unknown. This also concerns hygroreception, which is especially important for centipedes, as their epicuticle is thin and they lose water rapidly at low humidity. Thus, the detection of humid places is vital but to date no definite hygroreceptor was found in centipedes. House centipedes (Scutigeromorpha) possess a peculiar opening at the base of their antenna, termed 'scape organ', that houses up to 15 cone-shaped sensilla in a cavity. Lacking wall and tip-pores, these socket-less sensilla may be hypothesized to function as hygroreceptors similar to those found in hexapods.

RESULTS

The cone-shaped sensilla in the scape organ as well as nearby peg-shaped sensilla are composed of three biciliated receptor cells and three sheath cells. A tip-pore is present but plugged by a highly electron-dense secretion, which also overlays the entire inner surface of the cavity. Several solitary recto-canal epidermal glands produce the secretion. Receptor cell type 1 (two cells in cone-shaped sensilla, one cell in peg-shaped sensilla) possesses two long dendritic outer segments that project to the terminal pore. Receptor cell type 2 (one cell in both sensilla) possesses two shorter dendritic outer segments connected to the first (proximal) sheath cell that establishes a scolopale-like structure, documented for the first time in detail in a myriapod sensillum.

CONCLUSIONS

The nearly identical configuration of receptor cells 1 with their long dendritic outer segments in both sensilla is similar to hexapod hygroreceptors. In Scutigera coleoptrata, however, the mechanism of stimulus transduction is different. Water vapor may lead to swelling and subsequent elongation of the plug pin that enters the terminal pore, thus causing stimulation of the elongated dendritic outer segments. The interconnection of receptor cell 2 with short outer dendritic segments to a scolopale-like structure potentially suits both sensilla for vibration or strain detection. Thus, both sensilla located at the antennal base of scutigeromorph centipedes fulfill a dual function.

摘要

背景

蜈蚣是陆生食肉节肢动物,具有专门的感觉器官。然而,它们感觉生物学的许多方面仍然未知。这也涉及湿度感受,这对蜈蚣尤为重要,因为它们的表皮角质层很薄,在低湿度环境下会迅速失水。因此,检测潮湿的地方至关重要,但迄今为止在蜈蚣中尚未发现明确的湿度感受器。家蜈蚣(蚰蜒目)在其触角基部有一个特殊的开口,称为“柄节器官”,在一个腔内可容纳多达15个锥形感器。这些没有壁孔和端孔的无窝感器可能被推测具有与六足动物中发现的类似的湿度感受器功能。

结果

柄节器官中的锥形感器以及附近的钉状感器由三个双纤毛感觉细胞和三个鞘细胞组成。存在一个端孔,但被高度电子致密的分泌物堵塞,该分泌物也覆盖了腔的整个内表面。几个单独的直肠管表皮腺产生这种分泌物。1型感觉细胞(锥形感器中有两个细胞,钉状感器中有一个细胞)有两个长的树突状外段,伸向终孔。2型感觉细胞(两种感器中各有一个细胞)有两个较短的树突状外段,与第一个(近端)鞘细胞相连,该鞘细胞形成了一个似鞘帽的结构,这在多足纲感器中首次得到详细记录。

结论

两种感器中1型感觉细胞及其长树突状外段的近乎相同的结构类似于六足动物的湿度感受器。然而,在普通蜈蚣中,刺激转导机制是不同的。水蒸气可能导致进入终孔的堵塞栓肿胀并随后伸长,从而刺激伸长的树突状外段。2型感觉细胞短的树突状外段与似鞘帽结构的相互连接可能使两种感器都适合于振动或应变检测。因此,位于蚰蜒目蜈蚣触角基部的这两种感器都具有双重功能。

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