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The LNK Gene Family: At the Crossroad between Light Signaling and the Circadian Clock

机译:LNK基因家族:在光信号和生物钟之间的十字路口

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摘要

Light signaling pathways interact with the circadian clock to help organisms synchronize physiological and developmental processes to periodic environmental cycles. The plant photoreceptors responsible for clock resetting have been characterized, but signaling components that link the photoreceptors to the clock remain to be identified. Members of the family of NIGHT LIGHT–INDUCIBLE AND CLOCK-REGULATED (LNK) genes play key roles linking light regulation of gene expression to the control of daily and seasonal rhythms in Arabidopsis thaliana. Particularly, LNK1 and LNK2 were shown to control circadian rhythms, photomorphogenic responses, and photoperiod-dependent flowering time. Here we analyze the role of the four members of the LNK family in Arabidopsis in these processes. We found that depletion of the closely related LNK3 and LNK4 in a lnk1;lnk2 mutant background affects circadian rhythms, but not other clock-regulated processes such as flowering time and seedling photomorphogenesis. Nevertheless, plants defective in all LNK genes (lnkQ quadruple mutants) display developmental alterations that lead to increased rosette size, biomass, and enhanced phototropic responses. Our work indicates that members of the LNK family have both distinctive and partially overlapping functions, and are an essential link to orchestrate light-regulated developmental processes.
机译:光信号通路与生物钟相互作用,以帮助生物体将生理和发育过程同步到周期性的环境周期。已经表征了负责时钟重置的植物感光器,但是将感光器链接到时钟的信号组件仍有待确定。夜光诱导和时钟调节(LNK)基因家族的成员在将基因表达的光调节与拟南芥的日常节律和季节性节律联系起来方面发挥着关键作用。特别是,LNK1和LNK2已显示出控制昼夜节律,光形态发生反应和光周期依赖性开花时间。在这里,我们分析了拟南芥中LNK家族四个成员在这些过程中的作用。我们发现,lnk1; lnk2突变体背景中紧密相关的LNK3和LNK4的耗竭会影响昼夜节律,但不会影响其他时钟调节过程,例如开花时间和幼苗光形态发生。然而,在所有LNK基因(lnkQ四倍体突变体)中都存在缺陷的植物显示出发育变化,从而导致莲座丛大小,生物量增加和光致反应增强。我们的工作表明,LNK家族的成员既具有独特的功能,又具有部分重叠的功能,并且是协调光调节发育过程的必不可少的环节。

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