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家蝇视叶第一神经纤维网中控制昼夜节律的生物钟定位。

Localization of the clock controlling circadian rhythms in the first neuropile of the optic lobe in the housefly.

作者信息

Bałys M, Pyza E

机构信息

Zoological Museum, Institute of Zoology, Jagiellonian University, Ingardena 6, 30-060 Kraków, Poland.

出版信息

J Exp Biol. 2001 Oct;204(Pt 19):3303-10. doi: 10.1242/jeb.204.19.3303.

Abstract

The visual system of a fly expresses several circadian rhythms that have been detected in the photoreceptors of the compound eye and in the first neuropile, the lamina, of the underlying optic lobe. In the lamina, axons of two classes of interneuron, L1 and L2, exhibit cyclical size changes, swelling by day and shrinking by night. These rhythmic size changes may be generated by circadian oscillators located inside and/or outside the optic lobe. To localize such oscillators, we have examined changes in the axonal cross-sectional areas of L1 and L2 within the lamina of the housefly (Musca domestica) under conditions of 12 h of light and 12 h of darkness (LD12:12), constant darkness (DD) or continuous light (LL) 24 h after the medulla was severed from the rest of the brain. After the lesion, the axon size changes of L1 and L2 were maintained only in LD conditions, but were weaker than in control flies. In DD and LL conditions, they were eliminated. This indicates that circadian rhythms in the lamina of a fly are generated central to the lamina and medulla neuropiles of the optic lobe. Cyclical changes of light and darkness in LD conditions are still able, however, to induce a weak daily rhythm in the axon sizes of L1 and L2.

摘要

果蝇的视觉系统表现出几种昼夜节律,这些节律已在复眼的光感受器以及下层视叶的第一个神经纤维网(即神经层)中被检测到。在神经层中,两类中间神经元L1和L2的轴突呈现出周期性的大小变化,白天肿胀,夜晚收缩。这些节律性的大小变化可能由位于视叶内部和/或外部的昼夜振荡器产生。为了定位这些振荡器,我们研究了在将髓质从大脑其余部分切断24小时后,家蝇(家蝇)神经层内L1和L2轴突横截面积在12小时光照和12小时黑暗(LD12:12)、持续黑暗(DD)或持续光照(LL)条件下的变化。损伤后,L1和L2的轴突大小变化仅在LD条件下得以维持,但比对照果蝇中的变化要弱。在DD和LL条件下,这些变化被消除。这表明果蝇神经层中的昼夜节律是在视叶的神经层和髓质神经纤维网的中心产生的。然而,LD条件下光与暗的周期性变化仍然能够在L1和L2的轴突大小上诱导出微弱的每日节律。

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