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长足蛛形纲动物感觉器对机械刺激的电生理和行为反应。

Electrophysiological and behavioral responses of elongated solifuge sensilla to mechanical stimuli.

作者信息

Kundu Pallabi, Oviedo-Diego Mariela, Cargnelutti Franco, Jones R Ryan, Garcia Erika, Hebets Eileen A, Gaffin Douglas D

机构信息

School of Biological Sciences, University of Nebraska-Lincoln, Lincoln, USA.

Institute for Integrative Conservation, William & Mary, Williamsburg, VA, United States.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2025 May;211(3):277-292. doi: 10.1007/s00359-025-01731-y. Epub 2025 Feb 5.

Abstract

A fundamental understanding of animal sensory systems is crucial for comprehending their interactions with the environment and with other conspecifics. However, knowledge gaps persist, particularly in arachnids like the order Solifugae. While certain solifuge setae and palpal papillae have been studied structurally and electrophysiologically, providing evidence of chemoreception and mechanoreception, the sensilla on their walking legs remain unexplored. Notably, elongated sensilla on the femur and tibia of the 4th walking legs resemble trichobothria in other arachnid orders yet their function remains unknown. Thus, this study investigates whether these sensilla serve a mechanosensory function. Using electrophysiological and behavioral assays on Eremobates pallipes (Eremobatidae), we assessed the response of the elongated 4th leg sensilla to- (i) air particle movement and- (ii) air pressure changes. Air particle movement stimuli were generated using a speaker placed in the near field of the elongated sensilla that emitted low-frequency pure tones (10-1000 Hz). Air pressure stimuli involved forceful blowing on the sensilla. No response to air particle movement was observed, but a mechanosensory response to air pressure stimuli was detected. Electrophysiological data identified a fast-adapting and fast-recovering cell, and behavioral observations revealed a startle response. Our electrophysiology results suggest a mechanosensory role of elongated sensilla on the 4th walking legs of solifuge, indicating that although they are not sensitive enough to detect air particle movement stimuli, they can receive and respond to air pressure stimuli. Our behavioral experiments similarly show that these sensilla are not sensitive enough to detect air particle movement but respond to more forceful mechanosensory stimuli.

摘要

对动物感觉系统的基本理解对于理解它们与环境以及其他同种个体之间的相互作用至关重要。然而,知识空白依然存在,尤其是在避日蛛目等蛛形纲动物中。虽然某些避日蛛的刚毛和触肢上的乳突已经在结构和电生理方面进行了研究,提供了化学感受和机械感受的证据,但它们步足上的感觉器仍未被探索。值得注意的是,第四对步足的股骨和胫节上的细长感觉器类似于其他蛛形纲目的毛状感受器,但其功能仍然未知。因此,本研究调查这些感觉器是否具有机械感觉功能。通过对苍白遁蛛(遁蛛科)进行电生理和行为分析,我们评估了第四对步足细长感觉器对(i)空气颗粒运动和(ii)气压变化的反应。空气颗粒运动刺激是通过放置在细长感觉器近场的扬声器产生的,该扬声器发出低频纯音(10 - 1000赫兹)。气压刺激包括对着感觉器用力吹气。未观察到对空气颗粒运动的反应,但检测到对气压刺激的机械感觉反应。电生理数据确定了一个快速适应和快速恢复的细胞,行为观察揭示了一种惊吓反应。我们的电生理结果表明,避日蛛第四对步足上的细长感觉器具有机械感觉作用,这表明尽管它们不够敏感,无法检测到空气颗粒运动刺激,但它们可以接收并对气压刺激做出反应。我们的行为实验同样表明,这些感觉器不够敏感,无法检测到空气颗粒运动,但对更强的机械感觉刺激有反应。

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