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生物钟组件通过调节细胞分裂相关基因的表达和细胞分裂相关基因的表达来控制杨树的每日生长活动。

Circadian clock components control daily growth activities by modulating cytokinin levels and cell division-associated gene expression in Populus trees.

机构信息

School of Biological Sciences, C.H. Waddington Building, University of Edinburgh, Edinburgh, EH9 3BF, UK.

Department of Plant Physiology, Umeå Plant Science Centre, Umeå University, 901 87, Umeå, Sweden.

出版信息

Plant Cell Environ. 2018 Jun;41(6):1468-1482. doi: 10.1111/pce.13185. Epub 2018 Apr 15.

Abstract

Trees are carbon dioxide sinks and major producers of terrestrial biomass with distinct seasonal growth patterns. Circadian clocks enable the coordination of physiological and biochemical temporal activities, optimally regulating multiple traits including growth. To dissect the clock's role in growth, we analysed Populus tremula × P. tremuloides trees with impaired clock function due to down-regulation of central clock components. late elongated hypocotyl (lhy-10) trees, in which expression of LHY1 and LHY2 is reduced by RNAi, have a short free-running period and show disrupted temporal regulation of gene expression and reduced growth, producing 30-40% less biomass than wild-type trees. Genes important in growth regulation were expressed with an earlier phase in lhy-10, and CYCLIN D3 expression was misaligned and arrhythmic. Levels of cytokinins were lower in lhy-10 trees, which also showed a change in the time of peak expression of genes associated with cell division and growth. However, auxin levels were not altered in lhy-10 trees, and the size of the lignification zone in the stem showed a relative increase. The reduced growth rate and anatomical features of lhy-10 trees were mainly caused by misregulation of cell division, which may have resulted from impaired clock function.

摘要

树木是二氧化碳的汇和陆地生物量的主要生产者,具有明显的季节性生长模式。生物钟使生理和生化时间活动的协调成为可能,最佳地调节包括生长在内的多种特性。为了解析时钟在生长中的作用,我们分析了因中央时钟组件下调而导致时钟功能受损的欧洲山杨和颤杨树木。延迟伸长的拟南芥(lhy-10)树中,LHY1 和 LHY2 的表达通过 RNAi 减少,具有较短的自由运行周期,并表现出基因表达的时间调节中断和生长减少,比野生型树木产生的生物量少 30-40%。在 lhy-10 中,与生长调节重要的基因表达具有更早的相位,并且细胞周期蛋白 D3 的表达失准且无节奏。lhy-10 树木中的细胞分裂素水平较低,与细胞分裂和生长相关的基因的表达峰值时间也发生了变化。然而,lhy-10 树木中的生长素水平没有改变,并且茎中的木质化区域的大小显示出相对增加。lhy-10 树木生长速度降低和解剖结构的特征主要是由于细胞分裂的调节失常所致,这可能是由于时钟功能受损所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18ba/6001645/86d11e9e544f/PCE-41-1468-g001.jpg

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