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LOV 结构域Kelch 蛋白 2 和 Zeitlupe 在非诱导条件下抑制拟南芥光周期开花,依赖于黄素结合 Kelch 重复 F-box1。

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

机构信息

Department of Life Science, Faculty of Science, Gakushuin University, 1-5-1 Mejiro, Toshima-ku, Tokyo 171-8588, Japan.

出版信息

Plant J. 2011 Aug;67(4):608-21. doi: 10.1111/j.1365-313X.2011.04618.x. Epub 2011 Jul 14.

Abstract

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.

摘要

LOV 凯氏蛋白 2(LKP2)、ZEITLUPE(ZTL)/LOV 凯氏蛋白 1(LKP1)和黄素结合凯氏重复 F-box1(FKF1)构成拟南芥 F-box 蛋白家族,调节生物钟。过表达 LKP2 或 ZTL 会导致多个生物钟输出在持续光照和持续黑暗下的节律性丧失。在这里,我们展示了 LKP2 和 ZTL 在拟南芥光周期开花时间调控中的重要性。在过表达 LKP2 的植物中,CO 和 FT 的表达在长日照条件下下调。LKP2 和 ZTL 与 FKF1 发生物理相互作用,FKF1 从核内被招募到细胞质斑点中。LKP2 和 ZTL 抑制 FKF1 与 CYCLING DOF FACTOR 1 的相互作用,后者是 FKF1 的泛素化底物,定位于核内。LKP2 和 ZTL 的凯氏重复区足以与其与 FKF1 的物理相互作用以及 FKF1 向细胞质的易位。过表达 LKP2 凯氏重复区会导致长日照条件下开花时间延迟。lkp2 ztl 双突变体植物在短日照(非诱导)条件下比野生型植物更早开花,并且在双突变体植物中 CO 和 FT 的表达水平均上调。lkp2 ztl 的早花开花依赖于 FKF1。LKP2、ZTL 或两者均影响 FKF1 蛋白在早期光照期间的积累。这些结果表明,LKP2 和 ZTL 在光周期途径中的一个重要作用是在非诱导条件下抑制开花,这依赖于 FKF1。

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