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鹌鹑的眼睛:一个生物钟。

The quail's eye: a biological clock.

作者信息

Underwood H, Barrett R K, Siopes T

机构信息

Department of Zoology, North Carolina State University, Raleigh 27695.

出版信息

J Biol Rhythms. 1990 Fall;5(3):257-65. doi: 10.1177/074873049000500307.

Abstract

The site (intraocular vs. extraocular) of the biological clock driving a rhythm in melatonin content in the eyes of Japanese quail was investigated by alternately patching the left and right eyes of individual birds, otherwise held in constant light, for 12-hr periods. This patching protocol, therefore, exposed each eye to a light-dark cycle (LD 12:12) 180 degrees (12 hr) out of phase with the LD cycle experienced by the other eye. The optic nerves to both eyes were transected prior to initiating the patching protocol. The ocular melatonin rhythm (OMR) of the left eyes of quail could be entrained by this procedure 180 degrees out of phase with the rhythm expressed by the right eyes. Since optic nerve section would have deprived any putative extraocular clocks of photic entrainment information, the results show conclusively that the clock driving the OMR is located within the eye itself. In addition, the OMR of Japanese quail is remarkably unaffected by removing two potential neural inputs to the eye (sympathetic innervation from the superior cervical ganglia, and input from the isthmo-optic nucleus of the midbrain); this suggests that these inputs are not required to maintain the OMR. Finally, the clock driving the OMR of one eye does not appear to be coupled to the clock driving the OMR in the other eye, since permanently patching one eye abolished the ability of the patched eye to re-entrain to an 8-hr shift in the phase of an LD 12:12 cycle, whereas the exposed eye rapidly re-entrained to the phase-shifted cycle.

摘要

通过在持续光照条件下,让个体鹌鹑的左右眼交替被遮挡12小时,来研究驱动日本鹌鹑眼中褪黑素含量节律的生物钟位置(眼内还是眼外)。因此,这种遮挡方案使每只眼睛经历与另一只眼睛所经历的明暗周期(LD 12:12)相差180度(12小时)的明暗循环。在开始遮挡方案之前,切断了通向双眼的视神经。通过此程序,鹌鹑左眼的眼内褪黑素节律(OMR)能够被诱导,且与右眼所表现出的节律相差180度。由于切断视神经会剥夺任何假定的眼外生物钟的光诱导信息,结果确凿地表明驱动OMR的生物钟位于眼睛本身。此外,去除眼睛的两种潜在神经输入(来自颈上神经节的交感神经支配以及来自中脑峡视核的输入)对日本鹌鹑的OMR没有显著影响;这表明维持OMR不需要这些输入。最后,驱动一只眼睛OMR的生物钟似乎与驱动另一只眼睛OMR的生物钟没有耦合,因为永久性地遮挡一只眼睛消除了被遮挡眼睛重新适应LD 12:12周期相位8小时变化的能力,而未被遮挡的眼睛能迅速重新适应相位变化的周期。

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