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Photoresponses of a sensitive extraretinal photoreceptor in Aplysia.

机译:Aplysia中敏感的视网膜外感光器的光反应。

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摘要

1. The light-evoked membrane current, photo-current, of an extraretinal photo-receptor, the ventral photoresponsive neurone (v.p.n.), in the abdominal ganglion of Aplysia californica, was studied using the voltage clamp method. Flashes and steps of monochromatic light were used as stimuli. 2. Flashes of light 100 msec in duration elicit slowly developing outward currents which peak at 5--10 sec and then return to dark levels within 30--60 sec. 3. The peak of the action spectrum of v.p.n. is at 470 nm and is similar to the peak for R2, another photoresponsive extraretinal Aplysia neurone, and to the peak of absorption spectra of molluscan rhodopsins. V.p.n. also contains membrane-bound cytoplasmic pigmented granules similar to those found in R2, and these are thought to mediate the light response. 4. Photo-current is associated with an increase in membrane conductance. In normal sea water photo-current has a reversal potential at the K equilibrium potential, EK and the reversal potential has a Nernstian relationship with external K concentration. The current--voltage relationships for peak and steady-state photo-current are fitted by the same constant field equation; currents measured when voltage was changed in steps at peak photo-current also have a similar relationship with voltage. The results are similar when saturating or non-saturating light intensities were used. Thus it appears that the light-activated K+ conductance is neither time nor voltage dependent. 5. Minimally detectable responses occurred at flash photon densities of 10(12) photons cm-2 which is 10(-3) that for R2. This value is comparable to those reported for retinal photoreceptors of Pecten irradians, a scallop, and Salpa democratica, a pelagic tunicate, and is lower than values reported for extraretinal photoreceptors such as the pineal photoreceptors of Salmo gairdnerii irideus, the rainbow trout, and the caudal photoreceptor in the sixth abdominal ganglion of Procambarus clarkii, a crayfish. 6. V.p.n. has a linear amplitude response range for low intensities of light and a non-linear range that saturates at high intensities. In the accompanying paper the response wave form and its temperature dependence are interpreted according to a diffusion-based model.
机译:1.使用电压钳方法研究了加利福尼亚海ly腹部神经节中视网膜外感光体腹侧光响应神经元(v.p.n.)的光诱发膜电流,即光电流。闪光灯和单色光被用作刺激。 2.持续时间为100毫秒的闪光引起缓慢发展的外向电流,该电流在5--10秒达到峰值,然后在30--60秒内恢复到暗水平。 3. v.p.n.作用谱的峰值。在470 nm处,与R2(另一种光反应性视网膜外海泡神经元)的峰相似,并与软体动物视紫红质的吸收光谱峰相似。 VP还含有与R2中类似的膜结合细胞质色素颗粒,它们被认为介导了光反应。 4.光电流与膜电导的增加有关。在正常海水中,光电流在K平衡电位EK处具有逆转电位,并且逆转电位与外部K浓度具有Nernstian关系。峰值和稳态光电流的电流-电压关系由相同的恒定场方程拟合;电压在峰值光电流处逐步变化时测得的电流也与电压具有相似的关系。当使用饱和或非饱和光强度时,结果相似。因此,似乎光激活的K +电导率与时间和电压均无关。 5.在闪光光子密度为10(12)光子cm-2的闪光光子密度为R2的闪光光子密度为10(-3)的情况下,可检测到的响应最少。该值可与报道的扇贝的扇贝皮和扇贝的被膜的视网膜光感受器的视网膜光感受器报告的值相比较,并且比诸如鲑鱼的松果体光感受器,虹鳟和虹鳟的松果体感光器的视网膜外光感受器的报告值低。小龙虾克氏原螯虾第六腹神经节的尾部感光器。 6. V.p.n.对于低强度的光具有线性幅度响应范围,而在高强度的情况下具有非线性范围。在随附的论文中,根据基于扩散的模型解释了响应波形及其温度依赖性。

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