University Pierre and Marie Curie Paris 06, Laboratoire d'Océanographie Microbiene, Observatoire Océanologique, F-66651 Banyuls/Mer, France.
Plant Cell. 2009 Nov;21(11):3436-49. doi: 10.1105/tpc.109.068825. Epub 2009 Nov 30.
Biological rhythms that allow organisms to adapt to the solar cycle are generated by endogenous circadian clocks. In higher plants, many clock components have been identified and cellular rhythmicity is thought to be driven by a complex transcriptional feedback circuitry. In the small genome of the green unicellular alga Ostreococcus tauri, two of the master clock genes Timing of Cab expression1 (TOC1) and Circadian Clock-Associated1 (CCA1) appear to be conserved, but others like Gigantea or Early-Flowering4 are lacking. Stably transformed luciferase reporter lines and tools for gene functional analysis were therefore developed to characterize clock gene function in this simple eukaryotic system. This approach revealed several features that are comparable to those in higher plants, including the circadian regulation of TOC1, CCA1, and the output gene Chlorophyll a/b Binding under constant light, the relative phases of TOC1/CCA1 expression under light/dark cycles, arrhythmic overexpression phenotypes under constant light, the binding of CCA1 to a conserved evening element in the TOC1 promoter, as well as the requirement of the evening element for circadian regulation of TOC1 promoter activity. Functional analysis supports TOC1 playing a central role in the clock, but repression of CCA1 had no effect on clock function in constant light, arguing against a simple TOC1 /CCA1 one-loop clock in Ostreococcus. The emergence of functional genomics in a simple green cell with a small genome may facilitate increased understanding of how complex cellular processes such as the circadian clock have evolved in plants.
生物体内源性的生物钟使其适应太阳周期的生物节律。在高等植物中,许多生物钟元件已被鉴定,细胞的节律性被认为是由复杂的转录反馈电路驱动的。在单细胞绿藻衣藻的小基因组中,两个主时钟基因 Timing of Cab expression1 (TOC1) 和 Circadian Clock-Associated1 (CCA1) 似乎是保守的,但其他基因如 Gigantea 或 Early-Flowering4 则缺失。因此,为了研究该简单真核系统中生物钟基因的功能,我们构建了稳定转化的荧光素酶报告株系和基因功能分析工具。该方法揭示了一些与高等植物相似的特征,包括 TOC1、CCA1 和输出基因 Chlorophyll a/b Binding 在持续光照下的昼夜节律调节,TOC1/CCA1 表达在光/暗循环下的相对相位,持续光照下的非节律性过表达表型,CCA1 与 TOC1 启动子中保守的 evening 元件结合,以及 evening 元件对 TOC1 启动子活性的昼夜节律调节的必要性。功能分析支持 TOC1 在生物钟中起核心作用,但 CCA1 的抑制对持续光照下的生物钟功能没有影响,这表明在衣藻中不存在简单的 TOC1 /CCA1 单环时钟。功能基因组学在具有小基因组的简单绿色细胞中的出现,可能有助于更好地理解生物钟等复杂细胞过程是如何在植物中进化的。