LOV KELCH PROTEIN2 and ZEITLUPE repress Arabidopsis photoperiodic flowering under non‐inductive conditions, dependent on FLAVIN‐BINDING KELCH REPEAT F‐BOX1

拟南芥 生物 心理压抑 生物钟 细胞生物学 光周期性 植物 突变体 遗传学 基因表达 基因
作者
Tomoyuki Takase,Yuuki Nishiyama,Haruna Tanihigashi,Yasunobu Ogura,Yuji Miyazaki,Yumiko Yamada,Tomohiro Kiyosue
出处
期刊:Plant Journal [Wiley]
卷期号:67 (4): 608-621 被引量:88
标识
DOI:10.1111/j.1365-313x.2011.04618.x
摘要

LOV KELCH PROTEIN2 (LKP2), ZEITLUPE (ZTL)/LOV KELCH PROTEIN1 (LKP1) and FLAVIN-BINDING KELCH REPEAT F-BOX1 (FKF1) constitute a family of Arabidopsis F-box proteins that regulate the circadian clock. Over-expression of LKP2 or ZTL causes arrhythmicity of multiple clock outputs under constant light and in constant darkness. Here, we show the significance of LKP2 and ZTL in the photoperiodic control of flowering time in Arabidopsis. In plants over-expressing LKP2, CO and FT expression was down-regulated under long-day conditions. LKP2 and ZTL physically interacted with FKF1, which was recruited from the nucleus into cytosolic speckles. LKP2 and ZTL inhibited the interaction of FKF1 with CYCLING DOF FACTOR 1, a ubiquitination substrate for FKF1 that is localized in the nucleus. The Kelch repeat regions of LKP2 and ZTL were sufficient for their physical interaction with FKF1 and translocation of FKF1 to the cytoplasm. Over-expression of LKP2 Kelch repeats induced late flowering under long-day conditions. lkp2 ztl double mutant plants flowered earlier than wild-type plants under short-day (non-inductive) conditions, and both CO and FT expression levels were up-regulated in the double mutant plants. The early flowering of lkp2 ztl was dependent on FKF1. LKP2, ZTL or both affected the accumulation of FKF1 protein during the early light period. These results indicate that an important role of LKP2 and ZTL in the photoperiodic pathway is repression of flowering under non-inductive conditions, and this is dependent on FKF1.

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