Absence of a serum melatonin rhythm under acutely extended darkness in the horse

<p>Abstract</p> <p>Background</p> <p>In contrast to studies showing gradual adaptation of melatonin (MT) rhythms to an advanced photoperiod in humans and rodents, we previously demonstrated that equine MT rhythms complete a 6-h light/dark (LD) phase advance on the first...

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Main Authors: Furney Penney, Martin Ann-Marie, Murphy Barbara A, Elliott Jeffrey A
Format: Article
Language:English
Published: Ubiquity Press 2011-05-01
Series:Journal of Circadian Rhythms
Subjects:
Online Access:http://www.jcircadianrhythms.com/content/9/1/3
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spelling doaj-8b106055b6e74548a93a0851f2376bc82020-11-24T23:17:02ZengUbiquity PressJournal of Circadian Rhythms1740-33912011-05-0191310.1186/1740-3391-9-3Absence of a serum melatonin rhythm under acutely extended darkness in the horseFurney PenneyMartin Ann-MarieMurphy Barbara AElliott Jeffrey A<p>Abstract</p> <p>Background</p> <p>In contrast to studies showing gradual adaptation of melatonin (MT) rhythms to an advanced photoperiod in humans and rodents, we previously demonstrated that equine MT rhythms complete a 6-h light/dark (LD) phase advance on the first post-shift day. This suggested the possibility that melatonin secretion in the horse may be more strongly light-driven as opposed to endogenously rhythmic and light entrained. The present study investigates whether equine melatonin is endogenously rhythmic in extended darkness (DD).</p> <p>Methods</p> <p>Six healthy, young mares were maintained in a lightproof barn under an LD cycle that mimicked the ambient natural photoperiod outside. Blood samples were collected at 2-h intervals for 48 consecutive h: 24-h in LD, followed by 24-h in extended dark (DD). Serum was harvested and stored at -20°C until melatonin and cortisol were measured by commercial RIA kits.</p> <p>Results</p> <p>Two-way repeated measures ANOVA (n = 6/time point) revealed a significant circadian time (CT) x lighting condition interaction (<it>p < .0001</it>) for melatonin with levels non-rhythmic and consistently high during DD (CT 0-24). In contrast, cortisol displayed significant clock-time variation throughout LD and DD (<it>p = .0009</it>) with no CT x light treatment interaction (<it>p </it>= .4018). Cosinor analysis confirmed a significant 24-h temporal variation for melatonin in LD <it>(p = .0002) </it>that was absent in DD <it>(p = .51)</it>, while there was an apparent circadian component in cortisol, which approached significance in LD <it>(p = .076)</it>, and was highly significant in DD <it>(p = .0059).</it></p> <p>Conclusions</p> <p>The present finding of no 24 h oscillation in melatonin in DD is the first evidence indicating that melatonin is not gated by a self-sustained circadian process in the horse. Melatonin is therefore not a suitable marker of circadian phase in this species. In conjunction with recent similar findings in reindeer, it appears that biosynthesis of melatonin in the pineal glands of some ungulates is strongly driven by the environmental light cycle with little input from the circadian oscillator known to reside in the SCN of the mammalian hypothalamus.</p> http://www.jcircadianrhythms.com/content/9/1/3melatoninpinealcortisolhorsecircadianjet lagrhythmextended darkness
collection DOAJ
language English
format Article
sources DOAJ
author Furney Penney
Martin Ann-Marie
Murphy Barbara A
Elliott Jeffrey A
spellingShingle Furney Penney
Martin Ann-Marie
Murphy Barbara A
Elliott Jeffrey A
Absence of a serum melatonin rhythm under acutely extended darkness in the horse
Journal of Circadian Rhythms
melatonin
pineal
cortisol
horse
circadian
jet lag
rhythm
extended darkness
author_facet Furney Penney
Martin Ann-Marie
Murphy Barbara A
Elliott Jeffrey A
author_sort Furney Penney
title Absence of a serum melatonin rhythm under acutely extended darkness in the horse
title_short Absence of a serum melatonin rhythm under acutely extended darkness in the horse
title_full Absence of a serum melatonin rhythm under acutely extended darkness in the horse
title_fullStr Absence of a serum melatonin rhythm under acutely extended darkness in the horse
title_full_unstemmed Absence of a serum melatonin rhythm under acutely extended darkness in the horse
title_sort absence of a serum melatonin rhythm under acutely extended darkness in the horse
publisher Ubiquity Press
series Journal of Circadian Rhythms
issn 1740-3391
publishDate 2011-05-01
description <p>Abstract</p> <p>Background</p> <p>In contrast to studies showing gradual adaptation of melatonin (MT) rhythms to an advanced photoperiod in humans and rodents, we previously demonstrated that equine MT rhythms complete a 6-h light/dark (LD) phase advance on the first post-shift day. This suggested the possibility that melatonin secretion in the horse may be more strongly light-driven as opposed to endogenously rhythmic and light entrained. The present study investigates whether equine melatonin is endogenously rhythmic in extended darkness (DD).</p> <p>Methods</p> <p>Six healthy, young mares were maintained in a lightproof barn under an LD cycle that mimicked the ambient natural photoperiod outside. Blood samples were collected at 2-h intervals for 48 consecutive h: 24-h in LD, followed by 24-h in extended dark (DD). Serum was harvested and stored at -20°C until melatonin and cortisol were measured by commercial RIA kits.</p> <p>Results</p> <p>Two-way repeated measures ANOVA (n = 6/time point) revealed a significant circadian time (CT) x lighting condition interaction (<it>p < .0001</it>) for melatonin with levels non-rhythmic and consistently high during DD (CT 0-24). In contrast, cortisol displayed significant clock-time variation throughout LD and DD (<it>p = .0009</it>) with no CT x light treatment interaction (<it>p </it>= .4018). Cosinor analysis confirmed a significant 24-h temporal variation for melatonin in LD <it>(p = .0002) </it>that was absent in DD <it>(p = .51)</it>, while there was an apparent circadian component in cortisol, which approached significance in LD <it>(p = .076)</it>, and was highly significant in DD <it>(p = .0059).</it></p> <p>Conclusions</p> <p>The present finding of no 24 h oscillation in melatonin in DD is the first evidence indicating that melatonin is not gated by a self-sustained circadian process in the horse. Melatonin is therefore not a suitable marker of circadian phase in this species. In conjunction with recent similar findings in reindeer, it appears that biosynthesis of melatonin in the pineal glands of some ungulates is strongly driven by the environmental light cycle with little input from the circadian oscillator known to reside in the SCN of the mammalian hypothalamus.</p>
topic melatonin
pineal
cortisol
horse
circadian
jet lag
rhythm
extended darkness
url http://www.jcircadianrhythms.com/content/9/1/3
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AT elliottjeffreya absenceofaserummelatoninrhythmunderacutelyextendeddarknessinthehorse
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