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对红蓝光敏感1及其C端调控功能控制成花素基因表达。

HYPERSENSITIVE TO RED AND BLUE 1 and its C-terminal regulatory function control FLOWERING LOCUS T expression.

作者信息

Kang Xiaojun, Zhou Yun, Sun Xiaodong, Ni Min

机构信息

Department of Plant Biology, University of Minnesota, St Paul, MN 55108, USA.

出版信息

Plant J. 2007 Dec;52(5):937-48. doi: 10.1111/j.1365-313X.2007.03295.x. Epub 2007 Oct 3.

Abstract

The red and far-red light-absorbing phytochromes and UV-A/blue light-absorbing cryptochromes regulate seedling de-etiolation and flowering responses. The signaling steps that mediate the photoreceptor regulation on key flowering genes remain largely unknown. We report that a previously identified photomorphogenic mutant, hypersensitive to red and blue 1 (hrb1), flowered late and showed attenuated expression of FLOWERING LOCUS T (FT) over both long days and short days. Transgenic plants that overexpress the full-length HRB1, or its C-terminal half, flowered early and accumulated more FT messages under short-day conditions. The transgenic plants also displayed hyposensitive de-etiolation phenotypes, and the expression of these phenotypes requires the action of PIF4. The double mutant of hrb1/cry2 showed a flowering phenotype and an FT expression pattern similar to hrb1 under long-day conditions, suggesting that HRB1 may function downstream of cry2 under long-day conditions. In contrast, hrb1/phyB-9 showed a flowering phenotype and an FT expression pattern similar to phyB-9 over both long days and short days, indicating a modulatory role of HRB1 in the flowering pathway mediated by phyB. Overexpression of HRB1 did not affect the expression of the central clock oscillators, TOC1 and CCA1. HRB1 therefore represents a signaling step that regulates FT expression downstream of red and blue light perception.

摘要

吸收红光和远红光的光敏色素以及吸收UV-A/蓝光的隐花色素调节幼苗去黄化和开花反应。介导光感受器对关键开花基因调控的信号传导步骤在很大程度上仍不清楚。我们报道,一个先前鉴定的对红光和蓝光敏感的光形态建成突变体,即对红光和蓝光敏感1(hrb1),在长日照和短日照条件下均开花延迟,且开花位点T(FT)的表达减弱。过表达全长HRB1或其C端一半的转基因植物在短日照条件下开花早且积累更多的FT信息。这些转基因植物还表现出去黄化反应不敏感的表型,且这些表型的表达需要PIF4的作用。hrb1/cry2双突变体在长日照条件下表现出与hrb1相似的开花表型和FT表达模式,表明在长日照条件下HRB1可能在cry2下游发挥作用。相反,hrb1/phyB-9在长日照和短日照条件下均表现出与phyB-9相似的开花表型和FT表达模式,表明HRB1在phyB介导的开花途径中起调节作用。HRB1的过表达不影响核心生物钟振荡器TOC1和CCA1的表达。因此,HRB1代表了一个在红光和蓝光感知下游调节FT表达的信号传导步骤。

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