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Analysis of global changes in gene expression during activity-dormancy cycle in hybrid aspen apex

机译:杂种白杨顶点活动休眠周期基因表达的整体变化分析

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Perennial plants such as the long-lived trees of boreal forest cycle between periods of active growth and dormancy. Transition from active growth to dormancy is induced by short day (SD) signal. Once dormancy is established, prolonged exposure to low temperature is required for breaking dormancy before warm temperatures can induce growth. We have studied global changes in gene expression in the apex of model plant hybrid aspen during the distinct stages of activity-dormancy cycle. Our data shows that all stages of activity-dormancy cycle in the apex are associated with substantial modulation of the transcriptome. Detailed analysis of core cell cycle genes indicates that with the exception of plant specific B-type CDKs, all of the other CDKs are regulated post-transcriptionally during growth cessation. SD signal appears to target the expression of cyclin genes that are down regulated during growth arrest. Several of the cold hardiness related genes e. g. dehydrins are induced during transition to dormancy although temperature is not reduced and the up-regulation of the expression of these genes does not appear to rely on SD mediated induction of classical CBF transcription factors. Our results suggest that transcriptional control plays a key role in modulation of hormones such as ABA and GA that are known to play a central role in various processes during activity-dormancy cycle. Analysis of histone and DNA modification genes indicates that chromatin remodeling could be involved in coordinating global changes in gene expression during activity-dormancy cycle.
机译:多年生植物,例如北方森林的长寿树,在活跃生长和休眠期之间循环。短日(SD)信号可诱导从活跃生长过渡到休眠。一旦确定了休眠状态,则需要长时间暴露于低温下才能打破休眠状态,然后再温暖的温度下诱导生长。我们研究了在活动-休眠周期的不同阶段中模型植物杂交白杨的顶点基因表达的总体变化。我们的数据表明,活动-休眠周期在顶点的所有阶段都与转录组的实质性调节有关。核心细胞周期基因的详细分析表明,除植物特异性B型CDK外,所有其他CDK在停止生长过程中均受转录后调控。 SD信号似乎靶向生长抑制过程中下调的细胞周期蛋白基因的表达。一些与抗寒性有关的基因e。 G。虽然温度没有降低,脱水蛋白在休眠期间被诱导,并且这些基因表达的上调似乎不依赖于SD介导的经典CBF转录因子的诱导。我们的结果表明,转录控制在调节诸如ABA和GA等激素方面起着关键作用,众所周知,这些激素在活动-休眠周期的各个过程中起着核心作用。对组蛋白和DNA修饰基因的分析表明,染色质重塑可能参与了活动休眠周期中基因表达的整体变化。

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