bioRxiv · 10.1101/2020.04.28.065466
Serotonergic control in initiating defensive response to unexpected tactile stimulus in the trap-jaw ant Odontomachus kuroiwae
Abstract
A decision to express a defensive response or an escape response to a potential threat is crucial for insects to survive. This study investigated an aminergic mechanism underlying defensive responses to unexpected touch in an ant that has powerful mandibles, the so-called trap-jaw. The mandibles close extremely quickly and are used as a weapon during hunting. Tactile stimulation to the abdomen elicited quick forward movements in a "dart escape" in 90% of the ants in a colony. Less than 10% of the ants responded with a quick "defensive turn" towards the source of stimulation. To reveal the neuronal control mechanisms underlying this defensive behavior, the effects of brain biogenic amines on the responses to tactile stimulus were investigated. The levels of octopamine (OA), dopamine (DA) and serotonin (5HT) in the brain were significantly elevated in ants that responded with a defensive turn to the unexpected stimulus compared to ants that responded with a dart escape. Oral administration of DA and 5HT demonstrated that both amines contributed to the initiation of a defensive response to the stimulus. Oral administration of L-DOPA weakly affected the initiation of the defensive turn, while 5HTP strongly affected the initiation of defensive behavior. Oral administration of an antagonist of 5HT, ketanserin, abolished the effect of 5HTP. These results indicate that endogenous 5HT in the brain has a key role to play in modulating the initiation of defensive behavior in the trap-jaw ant.
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Aonuma, H.. 2020-04-29. Serotonergic control in initiating defensive response to unexpected tactile stimulus in the trap-jaw ant Odontomachus kuroiwae. https://doi.org/10.1101/2020.04.28.065466
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