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光周期敏感性分析揭示了光敏色素在水稻光周期开花中的作用。

Analysis of PHOTOPERIOD SENSITIVITY5 sheds light on the role of phytochromes in photoperiodic flowering in rice.

作者信息

Andrés Fernando, Galbraith David W, Talón Manuel, Domingo Concha

机构信息

Instituto Valenciano de Investigaciones Agrarias, Carretera Moncada-Naquera Km 7.5, 46113 Moncada, Spain.

出版信息

Plant Physiol. 2009 Oct;151(2):681-90. doi: 10.1104/pp.109.139097. Epub 2009 Aug 12.

Abstract

A great number of plants synchronize flowering with day length. In rice (Oryza sativa), photoperiod is the primary environmental cue that triggers flowering. Here, we show that the s73 mutant, identified in a gamma-irradiated Bahia collection, displays early flowering and photoperiodic insensitivity due to a null mutation in the PHOTOPERIOD SENSITIVITY5 (SE5) gene, which encodes an enzyme implicated in phytochrome chromophore biosynthesis. s73 mutant plants show a number of alterations in the characteristic diurnal expression patterns of master genes involved in photoperiodic control of flowering, resulting in up-regulation of the floral integrator Heading date3a (Hd3a). Early heading date1 (Ehd1), an additional rice floral activator, was also highly expressed in the s73 mutant, suggesting that SE5 represses Ehd1 in wild-type plants. Silencing of Ehd1 in both Bahia and s73 backgrounds indicated that SE5 regulates Ehd1 expression. The data also indicate that SE5 confers photoperiodic sensitivity through regulation of Hd1. These results provide direct evidence that phytochromes inhibit flowering by affecting both Hd1 and Ehd1 flowering pathways.

摘要

大量植物的开花与日照长度同步。在水稻(Oryza sativa)中,光周期是触发开花的主要环境信号。在此,我们表明,在经γ射线辐照的巴伊亚品种群体中鉴定出的s73突变体,由于光周期敏感性5(SE5)基因发生无效突变,表现出早花和光周期不敏感,该基因编码一种参与光敏色素生色团生物合成的酶。s73突变体植株在参与开花光周期调控的主控基因的特征性昼夜表达模式上出现了一些变化,导致开花整合因子抽穗期3a(Hd3a)上调。另一个水稻开花激活因子早期抽穗期1(Ehd1)在s73突变体中也高度表达,这表明SE5在野生型植株中抑制Ehd1。在巴伊亚和s73背景下对Ehd1进行沉默表明,SE5调节Ehd1的表达。数据还表明,SE5通过调控Hd1赋予光周期敏感性。这些结果提供了直接证据,证明光敏色素通过影响Hd1和Ehd1开花途径来抑制开花。

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