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period基因的
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  period gene
     Molecular Evolution of the Thr-Gly Region of the period Gene in Drosophila and Some Dipterans
     period基因的Thr-Gly区段在果蝇和部分双翅目昆虫中的分子进化特征
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  相似匹配句对
     Molecular Evolution of the Thr-Gly Region of the period Gene in Drosophila and Some Dipterans
     period基因的Thr-Gly区段在果蝇和部分双翅目昆虫中的分子进化特征
短句来源
     The Cloning of Entire Gene
     全长基因的克隆
短句来源
     The Course of Detection of the Gene
     基因的发现历程
短句来源
     THE MOLECULAR BIOLOGY OF THE BIOLOGICAL CLOCK GENE, period
     生物钟基因period的分子生物学
短句来源
     The Thr-Gly regions of the period gene were sequenced in the five siblinB22.ARJ3g species of the Dr auraria species complex and D. rufa.
     测定了金色果蝇复合种 (Drosophilaaurariaspeciescomplex) 5个姐妹种 (siblingspecies)和D rufa的period (per)基因的Thr Gly区段序列。
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  period gene
Influences of octopamine and juvenile hormone on locomotor behavior and period gene expression in the honeybee, Apis mellifera
      
Molecular cloning and daily variations of the Period gene in a reef fish Siganus guttatus
      
As the first step in understanding the molecular oscillation of the circa rhythms in the golden rabbitfish Siganus guttatus-a reef fish with a definite lunar-related rhythmicity-we cloned and sequenced a Period gene (rfPer).
      
The present study is the first report on the Period gene from a marine fish.
      
These results are discussed in the context of emerging findings which suggest that the period gene's product controls pacemaker functioning as an intracellularly acting entity.
      
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Many biochemical,physiological and behavioural processes in organisms ranging from microorganisms to vertebrates exhibit circadian rhythms driven by endogenous oscillators.Since the cloning of the biological clock gene period in Drosophila ,the endeavor in two decades to understand the molecular components that constitute these oscillators has been rewarded:we now know the circadian rhythm is driven by four cogs:PER,TIM,CLOCK and BMAL1,and the mechanism which govern the circadian oscillation has been...

Many biochemical,physiological and behavioural processes in organisms ranging from microorganisms to vertebrates exhibit circadian rhythms driven by endogenous oscillators.Since the cloning of the biological clock gene period in Drosophila ,the endeavor in two decades to understand the molecular components that constitute these oscillators has been rewarded:we now know the circadian rhythm is driven by four cogs:PER,TIM,CLOCK and BMAL1,and the mechanism which govern the circadian oscillation has been elucidated.This work on biological clock genes is spectacular not only for its heuristic value,but also because it illustrate the synegistic power of genetics and genomics.Given the evolutionary conservation of the mechanisms that govern the fundermental biological processes,the period story will greatly accelerate the reseach progress on human complex behavior

生物过程的昼夜节律是所有真核生物和部分原核生物的基本特征。自从period基因被克隆以后,生物钟基因的研究已经取得长足的进展。生物钟的4个基本部件如何调控昼夜节律的分子机制已被较详细地阐明,这是遗传学和基因组学相结合的一个非凡成就。本文回顾了per基因及生物钟分子机制的研究历史,旨在为人类复杂行为的研究提供一条思路。

 
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