Unoki Sae, Matsumoto Yukihisa, Mizunami Makoto
Graduate School of Life Sciences, Tohoku University, Katahira 2-1-1, Aoba-ku, Sendai 980-8577, Japan.
Eur J Neurosci. 2005 Sep;22(6):1409-16. doi: 10.1111/j.1460-9568.2005.04318.x.
Biogenic amines play major roles in the regulation of behavior in vertebrates and invertebrates. Previous studies in honey bees and fruit-flies Drosophila suggested that octopamine (OA, invertebrate counterpart of noradrenaline) and dopamine (DA) participate in appetitive olfactory conditioning with sucrose reward and aversive olfactory conditioning with electric shock punishment, respectively. In order to determine whether the effects of the two chatecholamines on electric shock and sugar learning can be generalized to other kinds of appetitive and aversive reinforcers, we studied the effects of OA and DA receptor antagonists on appetitive olfactory learning with water reward, and aversive olfactory learning with saline punishment in the cricket Gryllus bimaculatus. Crickets injected with epinastine or mianserin, OA receptor antagonists, into the hemolymph exhibited an impairment of appetitive learning with water reward, while aversive learning with saline punishment remained intact. In contrast, fluphenazine, chlorpromazine or spiperone, DA receptor antagonists, impaired aversive learning without affecting appetitive learning. This finding, combined with findings in previous studies, suggests that the octopaminergic reward system and dopaminergic punishment system participate in insect olfactory learning with various appetitive and aversive reinforcements.
生物胺在脊椎动物和无脊椎动物的行为调节中发挥着重要作用。先前对蜜蜂和果蝇的研究表明,章鱼胺(OA,去甲肾上腺素在无脊椎动物中的对应物)和多巴胺(DA)分别参与了以蔗糖为奖励的正向嗅觉条件反射和以电击为惩罚的负向嗅觉条件反射。为了确定这两种儿茶酚胺对电击和糖分学习的影响是否能推广到其他类型的正向和负向强化物,我们研究了章鱼胺和多巴胺受体拮抗剂对双斑蟋以水为奖励的正向嗅觉学习以及以盐水为惩罚的负向嗅觉学习的影响。向双斑蟋血淋巴中注射章鱼胺受体拮抗剂依匹斯汀或米安色林后,以水为奖励的正向学习受到损害,而以盐水为惩罚的负向学习则不受影响。相反,多巴胺受体拮抗剂氟奋乃静、氯丙嗪或螺哌隆损害了负向学习,而不影响正向学习。这一发现与先前研究的结果相结合,表明章鱼胺能奖励系统和多巴胺能惩罚系统参与了昆虫在各种正向和负向强化下的嗅觉学习。