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水稻黄素结合、KELCH 重复、F-BOX 1(OsFKF1)促进开花,与光周期无关。

Rice FLAVIN-BINDING, KELCH REPEAT, F-BOX 1 (OsFKF1) promotes flowering independent of photoperiod.

机构信息

Department of Plant Science, Plant Genomics and Breeding Institute, Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, 151-921, South Korea.

Department of Plant Life and Environmental Science, Hankyong National University, Ansung, 456-749, South Korea.

出版信息

Plant Cell Environ. 2015 Dec;38(12):2527-40. doi: 10.1111/pce.12549. Epub 2015 Jun 10.

Abstract

In the facultative long-day (LD) plant Arabidopsis thaliana, FLAVIN-BINDING, KELCH REPEAT, F-BOX 1 (FKF1) is activated by blue light and promotes flowering through the transcriptional and post-translational regulation of CONSTANS under inductive LD conditions. By contrast, the facultative short day (SD) plant rice (Oryza sativa) flowers early under inductive SD and late under non-inductive LD conditions; the regulatory function of OsFKF1 remains elusive. Here we show that osfkf1 mutants flower late under SD, LD and natural LD conditions. Transcriptional analysis revealed that OsFKF1 up-regulates the expression of the floral activator Ehd2 and down-regulates the expression of the floral repressor Ghd7; these regulators up- and down-regulate Ehd1 expression, respectively. Moreover, OsFKF1 can up-regulate Ehd1 expression under blue light treatment, without affecting the expression of Ehd2 and Ghd7. In contrast to the LD-specific floral activator Arabidopsis FKF1, OsFKF1 likely acts as an autonomous floral activator because it promotes flowering independent of photoperiod, probably via its distinct roles in controlling the expression of rice-specific genes including Ehd2, Ghd7 and Ehd1. Like Arabidopsis FKF1, which interacts with GI and CDF1, OsFKF1 also interacts with OsGI and OsCDF1 (also termed OsDOF12). Thus, we have identified similar and distinct roles of FKF1 in Arabidopsis and rice.

摘要

在兼性长日照(LD)植物拟南芥中,FLAVIN-BINDING、KELCH REPEAT、F-BOX 1(FKF1)被蓝光激活,并通过 CONSTANS 的转录和翻译后调控促进开花,在诱导性 LD 条件下。相比之下,兼性短日照(SD)植物水稻(Oryza sativa)在诱导性 SD 下开花早,在非诱导性 LD 下开花晚;OsFKF1 的调节功能仍不清楚。在这里,我们表明 osfkf1 突变体在 SD、LD 和自然 LD 条件下开花较晚。转录分析表明,OsFKF1 上调花激活剂 Ehd2 的表达,下调花抑制剂 Ghd7 的表达;这些调节剂分别上调和下调 Ehd1 的表达。此外,OsFKF1 可以在蓝光处理下上调 Ehd1 的表达,而不影响 Ehd2 和 Ghd7 的表达。与 LD 特异性花激活剂拟南芥 FKF1 不同,OsFKF1 可能作为自主花激活剂发挥作用,因为它促进开花不依赖于光周期,可能通过其在控制包括 Ehd2、Ghd7 和 Ehd1 在内的水稻特异性基因的表达中的独特作用。与拟南芥 FKF1 与 GI 和 CDF1 相互作用一样,OsFKF1 也与 OsGI 和 OsCDF1(也称为 OsDOF12)相互作用。因此,我们已经确定了 FKF1 在拟南芥和水稻中的相似和不同作用。

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