首页> 美国卫生研究院文献>The Yale Journal of Biology and Medicine >Focus: Clocks and Cycles: A Rhythmic Gene Entrained to Midnight May Regulate Photoperiod-Controlled Flowering in Arabidopsis
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Focus: Clocks and Cycles: A Rhythmic Gene Entrained to Midnight May Regulate Photoperiod-Controlled Flowering in Arabidopsis

机译:重点:时钟和周期:午夜夹带的有节奏的基因可能会调节拟南芥中光周期控制的开花。

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摘要

The widely held explanation for photoperiod-controlled flowering in long-day plants is largely embodied in the External Coincidence Hypothesis which posits that flowering is induced when activity of a rhythmic gene that regulates it (a putative “flowering gene”) occurs in the presence of light. Nevertheless, re-examination of the Arabidopsis flowering data from non 24-hour cycles of Roden et al. suggests that External Coincidence is not tenable if the circadian rhythm of the “flowering gene” were entrained to sunrise as commonly accepted. On the other hand, the hypothesis is supported if circadian cycling of the gene conforms to a solar rhythm, and its entrainment is to midnight on the solar clock. Data available point to flowering being induced by the gene which peaks in its expression between 16 to 19 h after midnight. In the normal 24 h cycle, that would be between 4 p.m. and 7 p.m., regardless of the photoperiod. Such timing of the “flowering gene” expression allows for variable coincidence between gene activity and light, depending on the photoperiod and cycle period. A correlation is found between earliness of flowering and the degree of coincidence of “flowering gene” expression with light (r = 0.88, p<0.01).
机译:关于长日照植物光周期控制开花的广泛理解,主要体现在外部重合假说,该假说假设当调节有节律的基因的活动(推定的“开花基因”)发生时,会诱导开花。光。然而,从Roden等人的非24小时周期中重新检查拟南芥开花数据。这表明,如果“开花基因”的昼夜节律被普遍接受,则外部重合就难以成立。另一方面,如果该基因的昼夜节律周期符合太阳节律,并且其携带时间到太阳钟的午夜,则支持该假设。现有数据表明该基因诱导开花,该基因的表达在午夜后16至19 h达到峰值。在正常的24小时周期中,该时间为下午4点。不论光照如何,晚上7点和晚上7点。 “开花基因”表达的这种时机允许基因活性和光之间的可变重合,具体取决于光周期和周期。发现开花的早期与“开花基因”表达与光的一致程度之间存在相关性(r = 0.88,p <0.01)。

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