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首页> 外文期刊>Hormones and behavior >Circadian behavioral and melatonin rhythms in the European starling under light-dark cycles with steadily changing periods: evidence for close mutual coupling?
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Circadian behavioral and melatonin rhythms in the European starling under light-dark cycles with steadily changing periods: evidence for close mutual coupling?

机译:欧洲黑鸟在昼夜周期稳定变化的明暗周期中的昼夜节律行为和褪黑激素节律:相互紧密耦合的证据吗?

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In European starlings exposed to constant conditions, circadian rhythms in locomotion and feeding can occasionally exhibit complete dissociation from each other. Whether such occasional dissociation between two behavioral rhythms reflects on the strength of the mutual coupling of their internal oscillators has not been investigated. To examine this, as well as to elucidate the role of melatonin in this system, we simultaneously measured the rhythms of locomotion, feeding and melatonin secretion in starlings exposed to light-dark (LD) cycles of low intensity with steadily changing periods (T). In birds initially entrained to T 24 LD cycles (12L:12D, 10:0.2 lx), beginning on day 15, T was either lengthened to 26.5 h (experiment 1) or shortened to T 21.5 h (experiment 2) by changing the daily dark period 4 min each day. After 18 and 19 cycles of T 26.5 and T 21.5, respectively, birds were released into constant dim light conditions (LL(dim); 0.2 lx) for about 2 weeks. Locomotor and feeding rhythms were continuously recorded. Plasma melatonin levels were measured at three times: in T 24, when T equaled 26 or 22 h and at the end of T 26.5 or T 21.5 exposure. The results show that, contrary to our expectations, the three rhythms were not dissociated. Rather they remained synchronized and changed their phase angle difference with the light zeitgeber concomitantly and at the same rate. The melatonin rhythm stayed in synchrony with the behavioral rhythms and as a consequence, peaked either during day or at night, depending on the phase relationship between the activity rhythm and the zeitgeber cycle.
机译:在处于恒定条件下的欧洲star鸟中,运动和进食中的昼夜节律有时会彼此完全分离。尚未研究两个行为节律之间的这种偶然分离是否反映了它们内部振荡器的相互耦合的强度。为了检查这一点,并阐明褪黑激素在该系统中的作用,我们同时测量了处于低强度光暗(LD)周期且周期稳定变化(T)的star鸟的运动,进食和褪黑激素分泌节律。从第15天开始,最初接受T 24 LD周期(12L:12D,10:0.2 lx)的家禽,T每天延长26.5 h(实验1)或缩短到T 21.5 h(实验2)。每天黑暗时段4分钟。分别在T 26.5和T 21.5的18和19个循环之后,将禽类释放到恒定的昏暗灯光条件下(LL(dim); 0.2 lx)约2周。连续记录运动和进食的节奏。在三遍测量血浆褪黑激素水平:在T 24中,当T等于26或22 h时,以及在T 26.5或T 21.5暴露结束时。结果表明,与我们的预期相反,这三个节奏并没有分离。相反,它们保持同步,并以相同的速率同时改变与光敏电阻的相角差。褪黑激素节律与行为节律保持同步,因此,取决于活动节律和Zeitgeber周期之间的相位关系,白天或晚上都会达到峰值。

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