Visual efference neuromodulates retinal timing: in vivo roles of octopamine, substance P, circadian phase, and efferent activation in Limulus.

نویسندگان

  • Amanda R Bolbecker
  • Corrinne C M Lim-Kessler
  • Jia Li
  • Alicia Swan
  • Adrienne Lewis
  • Jennifer Fleets
  • Gerald S Wasserman
چکیده

Efferent nerves coursing from the brain to the lateral eye of the horseshoe crab, Limulus polyphemus, increase its nighttime sensitivity to light. They release octopamine, which produces a categorical increase of photoreceptor response duration in vitro. Analogous in vivo timing effects on the electroretinogram (ERG) were demonstrated when octopamine was infiltrated into the eye of an otherwise intact animal; nighttime ERGs were longer than daytime ERGs. Related effects on the ERG were produced by daytime electrical stimulation of efferent fibers. Surprisingly, in a departure from effects predicted solely from in vitro octopamine data, nighttime ERG onsets were also accelerated relative to daytime ERG onsets. Drawing on earlier reports, these remarkable accelerations led to an examination of substance P as another candidate neuromodulator. It demonstrated that infiltrations of either modulator into the lateral eyes of otherwise intact crabs increased the amplitude of ERG responses but that each candidate modulator induced daytime responses that specifically mimicked one of the two particular aspects of the timing differences between day- and nighttime ERGs: octopamine increased the duration of daytime ERGs and substance P infiltrated during the day accelerated response onset. These results indicate that, in addition to octopamine's known role as an efferent neuromodulator that increases nighttime ERG amplitudes, octopamine clearly also affects the timing of photoreceptor responses. But these infiltration data go further and strongly suggest that substance P may also be released into the lateral eye at night, thereby accelerating the ERG's onset in addition to increasing its amplitude.

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منابع مشابه

Submitted to the Journal of Neurophysiology Visual Efference Neuromodulates Retinal Timing: In Vivo Roles of Octopamine, Substance P, Circadian Phase, and Efferent Activation in Limulus Abbreviated title: Visual Efference and Neuromodulation

Acknowledgements: We are particularly indebted for the expert technical assistance we received from Dr. Elwood K. Walls who generously assisted us in developing our in vivo infiltration technique. Several others also supported us in various aspects of this work: Katherine Beck, Vincent Traverso, Ashley Orchard and Crissanka Christadoss provided very useful assistance with data collection. Huiqi...

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Octopamine Affects the Timing of Retinal Responses in Limulus as well as their Amplitudes

This magisterial article is concerned with the effects of octopamine modulation on the quantity of activity that occurs in a variety of well-studied model nervous systems. It particularly notes the effects of such neuromodulation on the magnitude of the responses found in the visual system of Limulus, the horseshoe crab. We here wish to note that such neuromodulation also affects the latencies ...

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Efferent neurotransmission of circadian rhythms in Limulus lateral eye. I. Octopamine-induced increases in retinal sensitivity.

Octopamine increases the sensitivity of the Limulus lateral eye in situ when injected beneath the cornea during the day. The effect of octopamine is dose-dependent with a threshold concentration of about 0.1 microM injected at 1 microliter/min for 15 min. Injection of 40 microM octopamine increases lateral eye sensitivity to approximately 70% of the nighttime level normally caused by the effere...

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Circadian regulation of Limulus visual functions: A role for octopamine and cAMP

The purpose of this contribution is to review our current understanding of the source and biochemistry of the circadian efferent input to the eyes of the American horseshoe crab Limulus polyphemus and the impact of this input on the structure, physiology and biochemistry of Limulus eyes. Special emphasis is given to the role of the biogenic amine octopamine and biochemical cascades it activates...

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Circadian rhythms in the Limulus visual system.

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عنوان ژورنال:
  • Journal of neurophysiology

دوره 102 2  شماره 

صفحات  -

تاریخ انتشار 2009