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首页> 外文期刊>The Journal of general physiology >The response to monochromatic light flashes of the oxygen consumption of honeybee drone photoreceptors.
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The response to monochromatic light flashes of the oxygen consumption of honeybee drone photoreceptors.

机译:蜜蜂无人机感光器耗氧量对单色闪光的响应。

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Local measurements of the fall in oxygen pressure on stimulation of slices of the retina of the honeybee drone by flashes of light were made with oxygen microelectrodes and used to calculate the kinetics of the extra oxygen consumption (delta QO2) induced by each flash. The action spectrum for delta QO2 was obtained from response-intensity curves in response to brief (40 ms) monochromatic light flashes. The action spectrum of receptor potentials was obtained with the same experimental conditions. The two action spectra match closely: they deviate slightly from the photosensitivity spectrum of the drone rhodopsin (R). The deviation is thought to be due to wavelength-dependent light scattering and absorption in the preparation. In these experiments, the visual pigment was first illuminated with orange light, which is known to convert the bistable drone photopigment predominantly to the R state from the metarhodopsin (M) state. When long (300-900 ms) light flashes were used to elicit delta QO2, the responses to different wavelengths could not be matched in time course (as for the short flashes). Flashes producing large R-to-M conversions produced a prolonged delta QO2. The prolongation did not occur after double flashes, which produced both large R-to-M and M-to-R conversions. Similar changes in the length of afterpotentials in the photoreceptor cells and in a long-lasting decrease in photoreceptor intracellular K+ activity were found after long single or double flashes. The results are interpreted to show that the initial event for stimulation by light of metabolism in the drone retina is the same as that for stimulation of electrical responses (i.e., absorption of photons by R). Absorption of photons by M can produce an inhibitory effect on this stimulation.
机译:用氧气微电极对通过闪光灯刺激蜜蜂无人机的视网膜切片进行的氧气压力下降的局部测量,并用于计算每次闪光引起的额外氧气消耗(δQO2)的动力学。从响应于短暂的(40 ms)单色闪光的响应强度曲线获得了QO2的作用谱。在相同的实验条件下获得受体电位的作用谱。这两个动作光谱紧密匹配:它们与无人机视紫红质(R)的光敏光谱略有不同。认为该偏差是由于制剂中与波长有关的光的散射和吸收。在这些实验中,首先用橙色光照射视觉色素,已知该色素将双稳态无人机的光色素主要从视紫红质(M)状态转换为R状态。当长时间(300-900毫秒)的闪光灯被用来发出QO2增量时,对不同波长的响应在时间过程中是不匹配的(就短闪光灯而言)。产生大量R-M转换的闪光灯产生了较长的增量QO2。两次闪动后没有发生延长,产生了大的R到M和M到R转换。长时间单闪或双闪后,发现感光细胞后电位长度的类似变化以及感光细胞内K +活性的长期下降。解释结果表明,无人机视网膜中的新陈代谢光刺激的初始事件与电响应刺激(即R吸收光子)的事件相同。 M吸收光子可以对该刺激产生抑制作用。

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