Lee Hong Gil, Seo Pil Joon
Department of Biological Sciences, Sungkyunkwan University, Suwon, 16419, Republic of Korea.
Genes Genomics. 2018 Oct;40(10):1063-1068. doi: 10.1007/s13258-018-0710-4. Epub 2018 Jun 13.
Temporal and spatial compartmentalization of biological processes is facilitated by tissue-specific uncoupled circadian clocks in plants. However, interactions among tissue-specific circadian clocks have not been well established. The primary objective of this study was to describe both organ-specific circadian behaviors and centralized actions of the root clock. We analyzed transcript accumulation of circadianly-oscillating genes in roots and shoots. Expression of many clock components was different in roots and shoots. In particular, evening-expressed clock components were highly expressed in roots and likely play important roles in oscillation of the root clock. Consistent with this, the root and shoot clocks responded differentially to circadian gene mutations. The root clock was even dampened in gi-2 mutant. Circadian clocks basically oscillate in an organ-specific manner in plants, but the root clock also requires shoot-derived signals for organism-level coordination of circadian activity.
植物中组织特异性的解偶联生物钟促进了生物过程的时空分隔。然而,组织特异性生物钟之间的相互作用尚未得到充分证实。本研究的主要目的是描述器官特异性的昼夜节律行为以及根生物钟的集中作用。我们分析了根和茎中昼夜振荡基因的转录积累情况。许多生物钟组件的表达在根和茎中有所不同。特别是,在傍晚表达的生物钟组件在根中高度表达,可能在根生物钟的振荡中发挥重要作用。与此一致的是,根和茎的生物钟对昼夜节律基因突变的反应不同。在gi-2突变体中,根生物钟甚至受到抑制。植物中的生物钟基本上以器官特异性的方式振荡,但根生物钟也需要来自茎的信号来进行生物水平的昼夜活动协调。