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LNK1/2和COR27/28在依赖和不依赖FKF1的途径中调控拟南芥的光周期开花。

LNK1/2 and COR27/28 Regulate Arabidopsis Photoperiodic Flowering in FKF1-Dependent and -Independent Pathways.

作者信息

Gao Shiqi, Liu Mingming, Liang Lele, Lian Mengli, Wang Xuerui, Xie Qiguang, Xu Xiaodong

机构信息

State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences, Henan University, Kaifeng, China.

出版信息

Plant Cell Environ. 2025 Aug;48(8):6185-6188. doi: 10.1111/pce.15605. Epub 2025 May 5.

Abstract

The circadian clock allows plants to anticipate daily and seasonal environmental changes, thereby optimizing photoperiod-dependent flowering. While core clock components such as LNK1 and LNK2, as well as COR27 and COR28, have been implicated in photoperiodic flowering in Arabidopsis, their specific roles and interactions remain poorly understood. Here, genetic analysis revealed that LNK1/2 act upstream of COR27/28 under long-day (LD) conditions and contribute slight additively under short-day (SD) conditions. LNK1/2 directly bind the FKF1 promoter to promote its transcriptiontg, leading to upregulation of FT and floral induction. By contrast, COR27/28 enhance FT expression through an FKF1-independent mechanism. Transcriptional and protein-level assays, including qRT-PCR and split-luciferase complementation, revealed that both LNK1/2 and COR27/28 are regulated by photoperiod and form a protein complex enriched near ZT12. These findings suggest coordinated regulation of flowering via both shared and distinct pathways. Together, our results demonstrate that LNK1/2 and COR27/28 integrate photoperiodic signals to regulate FT expression through FKF1-dependent and -independent mechanisms, revealing a new layer of circadian control over seasonal flowering.

摘要

生物钟使植物能够预测每日和季节性的环境变化,从而优化依赖光周期的开花过程。虽然核心生物钟组件如LNK1和LNK2,以及COR27和COR28,已被证明与拟南芥的光周期开花有关,但其具体作用和相互作用仍知之甚少。在这里,遗传分析表明,在长日照(LD)条件下,LNK1/2在COR27/28的上游起作用,在短日照(SD)条件下有轻微的累加作用。LNK1/2直接结合FKF1启动子以促进其转录,导致FT上调和花诱导。相比之下,COR27/28通过一种不依赖FKF1的机制增强FT表达。包括qRT-PCR和分裂荧光素酶互补在内的转录和蛋白质水平分析表明,LNK1/2和COR27/28都受光周期调节,并在ZT12附近形成富集的蛋白质复合物。这些发现表明通过共享和不同途径对开花进行协调调节。总之,我们的结果表明,LNK1/2和COR27/28整合光周期信号,通过依赖FKF1和不依赖FKF1的机制调节FT表达,揭示了生物钟对季节性开花控制的新层面。

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