Chen B, Meinertzhagen I A, Shaw S R
Neuroscience Institute, Dalhousie University, Halifax, Nova Scotia, Canada.
J Comp Physiol A. 1999 Nov;185(5):393-404. doi: 10.1007/s003590050400.
Two sets of wide-field neurons extend neurites into the fly's optic lamina, where monopolar cells receive photoreceptor input. They exhibit immunoreactivity to antibodies raised against either 5-hydroxytryptamine or the crustacean peptide PDH, respectively. Both are proposed whole-field neuromodulators of vision, apparently regulating a circadian rhythm of monopolar cell size. Seeking functional correlates, we have re-examined the electroretinogram for circadian rhythmicity, and for responses to locally injected 5-hydroxytryptamine and peptide. Long-term electroretinogram recordings from Calliphora entrained to a light/dark cycle and then transferred to constant darkness, uncovered a gradual, modest increase during the subjective night in the electroretinogram's ON- and OFF-transients, from the lamina's monopolar cells. Five to twenty nl of 5-hydroxytryptamine (10(-3) mol.1(-1)) injected into the head haemolymph strongly enhanced the electroretinogram transients, an action reversed by 5-hydroxytryptamine antagonists. Injected into the eye, 5-hydroxytryptamine (10(-4) mol.1(-1)) had the opposite effect; the rapid onset there suggests direct action, whilst the opposing effect from haemolymph injection suggests a different receptor site. Pigment-dispersing hormone (2.2 x 10(-5) mol.1(-1)) injected into the haemolymph increased the electroretinogram transients along a biphasic course, with a slow partial recovery; injected into the eye, it lacked effect.
两组广域神经元将神经突延伸到果蝇的视神经层,单极细胞在此接收光感受器输入。它们分别对针对5-羟色胺或甲壳类肽PDH产生的抗体表现出免疫反应性。两者均被认为是视觉的全视野神经调节剂,显然在调节单极细胞大小的昼夜节律。为了寻找功能相关性,我们重新检查了视网膜电图的昼夜节律以及对局部注射5-羟色胺和肽的反应。对被光/暗周期夹带然后转移到持续黑暗中的丽蝇进行长期视网膜电图记录,发现主观夜间视网膜电图的开和关瞬变(来自视神经层的单极细胞)逐渐适度增加。将5至20纳升5-羟色胺(10^(-3)摩尔·升^(-1))注入头部血淋巴会强烈增强视网膜电图瞬变,5-羟色胺拮抗剂可逆转此作用。将5-羟色胺(10^(-4)摩尔·升^(-1))注入眼睛则产生相反的效果;其在那里迅速起效表明是直接作用,而血淋巴注射产生的相反效果表明存在不同的受体位点。将色素分散激素(2.2×10^(-5)摩尔·升^(-1))注入血淋巴会使视网膜电图瞬变呈双相变化增加,且有缓慢的部分恢复;注入眼睛则无效果。