Jørgensen Kari, Almaas Tor Jørgen, Marion-Poll Frédéric, Mustaparta Hanna
Neuroscience Unit, Department of Biology, NTNU, Olav Kyrres gate 9, NO-7489, Trondheim, Norway.
Chem Senses. 2007 Nov;32(9):863-79. doi: 10.1093/chemse/bjm057. Epub 2007 Sep 3.
Discrimination of edible and noxious food is crucial for survival in all organisms. We have studied the physiology of the gustatory receptor neurons (GRNs) in contact chemosensilla (insect gustatory organs) located on the antennae of the moth Heliothis virescens, emphasizing putative phagostimulants and deterrents. Sucrose and the 2 bitter substances quinine and sinigrin elicited responses in a larger proportion of GRNs than inositol, KCl, NaCl, and ethanol, and the firing thresholds were lowest for sucrose and quinine. Variations in GRN composition in individual sensilla occurred without any specific patterns to indicate specific sensillum types. Separate neurons showed excitatory responses to sucrose and the 2 bitter substances quinine and sinigrin, implying that the moth might be able to discriminate bitter substances in addition to separating phagostimulants and deterrents. Besides being detected by separate receptors on the moth antennae, the bitter tastants were shown to have an inhibitory effect on phagostimulatory GRNs. Sucrose was highly appetitive in behavioral studies of proboscis extension, whereas quinine had a nonappetitive effect in the moths.
辨别可食用和有毒食物对所有生物体的生存至关重要。我们研究了烟草天蛾触角上接触化学感受器(昆虫味觉器官)中味觉受体神经元(GRNs)的生理学,重点关注假定的取食刺激物和抑制剂。与肌醇、氯化钾、氯化钠和乙醇相比,蔗糖以及两种苦味物质奎宁和黑芥子硫苷酸钾能在更大比例的GRNs中引发反应,且蔗糖和奎宁的激发阈值最低。单个感受器中GRN组成的变化没有任何特定模式来表明特定的感受器类型。不同的神经元对蔗糖以及两种苦味物质奎宁和黑芥子硫苷酸钾表现出兴奋性反应,这意味着除了区分取食刺激物和抑制剂外,烟草天蛾可能还能够辨别苦味物质。除了在烟草天蛾触角上被不同的感受器检测到外,苦味剂还对取食刺激GRNs有抑制作用。在喙伸展行为研究中,蔗糖极具吸引力,而奎宁对烟草天蛾有非吸引力作用。