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首页> 外文期刊>Plant and cell physiology >No Time for Spruce: Rapid Dampening of Circadian Rhythms in Picea abies (L. Karst)
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No Time for Spruce: Rapid Dampening of Circadian Rhythms in Picea abies (L. Karst)

机译:没有时间进行云杉种植:云杉云杉的昼夜节律快速减弱(L. Karst)

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摘要

The identification and cloning of full-length homologs of circadian clock genes from Picea abies represent a first step to study the function and evolution of the circadian clock in gymnosperms. Phylogenetic analyses suggest that the sequences of key circadian clock genes are conserved between angiosperms and gymnosperms. though fewer homologous copies were found for most gene families in P. abies. We detected diurnal cycling of circadian clock genes in P. abies using quantitative real-time PCR; however, cycling appeared to be rapidly dampened under free-running conditions. Given the unexpected absence of transcriptional cycling during constant conditions, we employed a complementary method to assay circadian rhythmic outputs and measured delayed fluorescence in seedlings of Norway spruce. Neither of the two approaches to study circadian rhythms in Norway spruce could detect robust similar to 24 h cycling behavior under constant conditions. These data suggest gene conservation but fundamental differences in clock function between gymnosperms and other plant taxa.
机译:鉴定和克隆来自云杉云杉的昼夜节律时钟基因的全长同源物是研究裸子植物昼夜节律时钟的功能和进化的第一步。系统发育分析表明,关键的生物钟基因的序列在被子植物和裸子植物之间是保守的。尽管在大别病菌中发现大多数基因家族的同源拷贝较少。我们使用定量实时荧光定量PCR检测了长寿假单胞菌昼夜节律基因的昼夜循环。然而,在自由行驶条件下,骑行似乎被迅速抑制。考虑到恒定条件下转录循环的意外缺失,我们采用了一种补充方法来测定昼夜节律的输出并测量挪威云杉幼苗的荧光延迟。在挪威云杉中研究昼夜节律的两种方法都无法检测到在恒定条件下类似于24小时骑行行为的鲁棒性。这些数据表明基因保守,但是裸子植物和其他植物类群在时钟功能上的根本差异。

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