Lakin-Thomas P L
Department of Plant Sciences, University of Cambridge, Downing Street, Cambridge UK.
Trends Genet. 2000 Mar;16(3):135-42. doi: 10.1016/s0168-9525(99)01945-9.
The mechanisms of circadian clocks, which time daily events, are being investigated by characterizing 'clock genes' that affect daily rhythms. The core of the clock mechanism in Drosophila, Neurospora, mammals and cyanobacteria is described by a transcription-translation feedback-loop model. However, problems with this model could indicate that it is time to look at the functions of these genes in a different light. Our a priori assumptions about the nature of circadian clocks might have restricted our search for new mutants in ways that prevent us from finding important clock genes.
调节日常事件时间的生物钟机制,正通过对影响日常节律的“时钟基因”进行表征来加以研究。果蝇、脉孢菌、哺乳动物和蓝细菌中生物钟机制的核心,由一个转录-翻译反馈环模型来描述。然而,该模型存在的问题可能表明,是时候从不同角度审视这些基因的功能了。我们关于生物钟本质的先验假设,可能以妨碍我们找到重要时钟基因的方式,限制了我们对新突变体的寻找。