Circadian rhythms in Limulus photoreceptors. II. Quantum bumps.
Open Access
- 1 September 1990
- journal article
- research article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 96 (3), 665-685
- https://doi.org/10.1085/jgp.96.3.665
Abstract
The light response of the lateral eye of the horseshoe crab, Limulus polyphemus, increases at night, while the frequency of spontaneous discrete fluctuations of its photoreceptor membrane potential (quantum bumps) decreases. These changes are controlled by a circadian clock in the brain, which transmits activity to the eye via efferent optic nerve fibers (Barlow, R. B., S. J. Bolanski, and M. L Brachman. 1977. Science. 197:86-89). Here we report the results of experiments in which we recorded from single Limulus photoreceptors in vivo for several days and studied in detail changes in their physiological and membrane properties. We found that: (a) The shape of (voltage) quantum bumps changes with the time of day. At night, spontaneous bumps and bumps evoked by dim light are prolonged. The return of the membrane potential to its resting level is delayed, but the rise time of the bump is unaffected. On average, the area under a bump is 2.4 times greater at night than during the day. (b) The rate of spontaneous bumps decreases at night by roughly a factor of 3, but their amplitude distribution remains unchanged. (c) The resting potential and resistance of the photoreceptor membrane do not change with the time of day. (d) The relationship between injected current and impulse rate of the second order neuron, the eccentric cell, also remains unchanged with the time of day. Thus the efferent input from the brain to the retina modulates some of the membrane properties of photoreceptor cells. Our findings suggest that the efferent input acts on ionic channels in the membrane to increase the sensitivity of the photoreceptor to light.Keywords
This publication has 42 references indexed in Scilit:
- Relationship between light sensitivity and intracellular free Ca concentration in Limulus ventral photoreceptors. A quantitative study using Ca-selective microelectrodes.The Journal of general physiology, 1985
- Comparison of time constants of single channel patches, quantum bumps, and noise analysis inLimulus ventral photoreceptorsThe Journal of Membrane Biology, 1985
- The role of metarhodopsin in the generation of spontaneous quantum bumps in ultraviolet receptors of Limulus median eye. Evidence for reverse reactions into an active state.The Journal of general physiology, 1985
- Circadian clock in Limulus brain increases response and decreases noise of retinal photoreceptorsNature, 1980
- Octopamine-Sensitive Adenylate Cyclase: Evidence for a Biological Role of Octopamine in Nervous TissueScience, 1973
- Voltage Noise in Limulus Visual CellsScience, 1968
- Discrete Potentials in the Dark-adapted Eye of the Crab LimulusNature, 1968
- One-Stage Model for Visual Temporal IntegrationJournal of the Optical Society of America, 1966
- Electrical Connections between Visual Cells in the Ommatidium of LimulusScience, 1965
- Spontaneous Slow Potential Fluctuations in the Limulus PhotoreceptorThe Journal of general physiology, 1964