Kondakath Gayathri, Trimmer Barry A
Department of Biology, Tufts University, 200 Boston Ave, Medford, MA 02155, USA.
J Exp Biol. 2024 Dec 15;227(24). doi: 10.1242/jeb.248012. Epub 2024 Dec 20.
This study focuses on the nociceptive responses observed in the tobacco hornworm (Manduca sexta). While prior investigations have described the sensory neurons and muscle activation patterns associated with the 'strike' behavior, there remains a gap in our understanding of the alternative 'withdrawal' movement, wherein the animal bends its head and thorax away from the stimulus. Our results show that stimulus location determines which nocifensive behavior is elicited. Interestingly, stimulation of specific mid-body segments could result in either withdrawal or strike, indicating a decision process rather than a hard-wired circuit. The withdrawal behavior was characterized using high-speed videography and electromyography. The results show that withdrawal in M. sexta is driven by contralateral ventral muscles, followed by an increase in ipsilateral muscle activation just before the bending stops. Dorsal muscles are co-activated throughout the movement. Although both withdrawal and strike behaviors involve sequential activation of lateral muscles, these behaviors involve different muscle groups. This discovery provides a novel model system to investigate the context dependence and decision-making processes triggered by stressful or noxious stimuli.
本研究聚焦于烟草天蛾(Manduca sexta)中观察到的伤害性反应。虽然先前的研究已经描述了与“攻击”行为相关的感觉神经元和肌肉激活模式,但我们对另一种“退缩”运动的理解仍存在差距,在这种运动中,动物会将其头部和胸部远离刺激源。我们的结果表明,刺激位置决定了引发哪种伤害防御行为。有趣的是,刺激特定的身体中部节段可能导致退缩或攻击,这表明存在一个决策过程,而非固定连接的神经回路。使用高速摄像和肌电图对退缩行为进行了表征。结果表明,烟草天蛾的退缩是由对侧腹侧肌肉驱动的,随后在弯曲停止前同侧肌肉激活增加。在整个运动过程中背侧肌肉共同激活。虽然退缩和攻击行为都涉及外侧肌肉的顺序激活,但这些行为涉及不同的肌肉群。这一发现为研究由应激或有害刺激触发的情境依赖性和决策过程提供了一个新的模型系统。