首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >A systematic forward genetic analysis identified components of the Chlamydomonas circadian system.
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A systematic forward genetic analysis identified components of the Chlamydomonas circadian system.

机译:系统的正向遗传分析确定了衣藻昼夜节律系统的组成部分。

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摘要

The molecular bases of circadian clocks have been studied in animals, fungi, bacteria, and plants, but not in eukaryotic algae. To establish a new model for molecular analysis of the circadian clock, here we identified a large number of components of the circadian system in the eukaryotic unicellular alga Chlamydomonas reinhardtii by a systematic forward genetic approach. We isolated 105 insertional mutants that exhibited defects in period, phase angle, and/or amplitude of circadian rhythms in bioluminescence derived from a luciferase reporter gene in their chloroplast genome. Simultaneous measurement of circadian rhythms in bioluminescence and growth rate revealed that some of these mutants had defects in the circadian clock itself, whereas one mutant had a defect in a specific process for the chloroplast bioluminescence rhythm. We identified 30 genes (or gene loci) that would be responsible for rhythm defects in 37 mutants. Classification of these genes revealed that various biological processes are involved in regulation of the chloroplast rhythmicity. Amino acid sequences of six genes that would have crucial roles in the circadian clock revealed features of the Chlamydomonas clock that have both partially plant-like and original components.
机译:在动物,真菌,细菌和植物中研究了生物钟的分子基础,但在真核藻类中尚未研究。为了建立用于昼夜节律分子分析的新模型,在这里我们通过系统的正向遗传方法鉴定了真核单细胞藻类莱茵衣藻中昼夜节律系统的大量组成部分。我们分离了105个插入突变体,这些突变体在叶绿体基因组基因组中源自荧光素酶报道基因的生物发光中在周期,相位角和/或昼夜节律的振幅方面存在缺陷。同时测量生物发光和生长速率中的生物钟节律表明,这些突变体中的一些在生物钟本身中具有缺陷,而一个突变体在叶绿体生物发光节律的特定过程中具有缺陷。我们确定了30个基因(或基因位点),这将负责37个突变体的节律缺陷。这些基因的分类显示,叶绿体节律的调节涉及各种生物学过程。在生物钟中起关键作用的六个基因的氨基酸序列揭示了衣藻钟的特征,这些特征既具有部分植物样的成分又具有原始成分。

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