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Independent regulation of flowering by phytochrome B and gibberellins in Arabidopsis

机译:拟南芥中植物色素B和赤霉素对花期的独立调控

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Phytochromes and gibberellins (GAs) coordinately regulate multiple aspects of Arabidopsis development. Phytochrome B (PHYB) promotes seed germination by increasing GA biosynthesis, but inbibits hypocotyl elongation by decreasing the responsiveness to GAs. Later in the life cycle of the plant, PHYB and GAs have opposite effects on flowering. PHYB delays flowering, while GAs promote flowering, particularly under noninductive photoperiods. To learn how PHYB and GAs interact in the control of flowering, we have analyzed the effect of a phyB mutation on flowering time and on the expression of the floral meristem-identity gene LFY (LEAF). We show that the early flowering caused by phyB correlated with an increase in LFY expression, which complements our previous finding that GAs are required for activation of LFY under noninductive photoperiods (M.A. Blazquez, R. Green, O. Nilsson, M.R. Sussman, D. Weigel [1998] Plant Cell 10: 791- 800). Since phyB did not change the GA responsiveness of the LFY promoter and suppressed the lack of flowering of severe GA-deficient mutants under short days, we propose that PHYB modulates flowering time at least partially through a GA-independent pathway. Interestingly, the effects of PHYB on flowering do not seem to be mediated by transcriptional up-regulation of genes such as CO (CONSTANS) and FT (Flowering locus T), which are known to mediate the effects of the photoperiod-dependent floral-induction pathway.
机译:植物色素和赤霉素(GAs)协调调节拟南芥发育的多个方面。植物色素B(PHYB)可通过增加GA生物合成来促进种子发芽,但可通过降低对GA的响应来抑制下胚轴伸长。在植物生命周期的后期,PHYB和GA对开花有相反的影响。 PHYB延迟开花,而GA则促进开花,特别是在非感应光周期下。为了了解PHYB和GA如何在开花控制中相互作用,我们分析了phyB突变对开花时间和花分生组织同一性基因LFY(LEAF)表达的影响。我们显示,由phyB引起的早期开花与LFY表达的增加有关,这补充了我们先前的发现,即GA在非诱导性光周期下激活LFY需要(GA Blazquez,R.Green,O.Nilsson,MR Sussman,D. Weigel [1998] Plant Cell 10:791-800)。由于phyB不会改变LFY启动子的GA反应性,并抑制短时间内在GA严重缺失的突变体上开花的缺乏,因此我们建议PHYB至少部分地通过GA独立途径调节开花时间。有趣的是,PHYB对开花的影响似乎并不由诸如CO(CONSTANS)和FT(开花基因座T)等基因的转录上调所介导,众所周知,这些基因可介导光周期依赖性花卉诱导的影响。途径。

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