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Phytochrome B1-dependent control of SP5G transcription is the basis of the night break and red to far-red light ratio effects in tomato flowering

机译:SP5G转录的Phytochrome B1依赖性控制是番茄开花中夜间休息和红色到远红光比效应的基础

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摘要

Abstract Background Phytochromes are dimeric proteins with critical roles in perceiving day length and the environmental signals that trigger flowering. Night break (NB) and the red to far-red light ratio (R:FR) have been used extensively as tools to study the photoperiodic control of flowering. However, at the molecular level, little is known about the effect of NB and different R:FR values on flowering in day-neutral plants (DNPs) such as tomato. Results Here, we show that tomato SP5G, SP5G2, and SP5G3 are homologs of Arabidopsis thaliana FLOWERING LOCUS T (FT) that repress flowering in Nicotiana benthamiana. NB every 2 h at intensities of 10 μmol m− 2 s− 1 or lower R:FR (e.g., 0.6) caused a clear delay in tomato flowering and promoted SP5G mRNA expression. The promoted SP5G mRNA expression induced by red light NB and low R:FR treatments was reversed by a subsequent FR light stimulus or a higher R:FR treatment. The tomato phyB1 mutation abolished the effects of NB and lower R:FR treatments on flowering and SP5G mRNA expression, indicating that the effects were mediated by phytochrome B1 in tomato. Conclusion Our results strongly suggest that SP5G mRNA suppression is the principal cause of NB and lower R:FR effects on flowering in tomato.
机译:摘要背景植物植物植物是二聚体蛋白质,具有在感知日长度和触发开花的环境信号中的关键作用。夜间休息(NB)和红色到远红光比(R:Fr)已被广泛用于研究开花的光周期控制的工具。然而,在分子水平下,关于Nb和不同R:FR值在白天 - 中性植物(DNP)中的不同R值的影响几乎是已知的,例如番茄。结果在这里,我们展示了番茄SP5G,SP5G2和SP5G3是拟南芥开花基因座T(FT)的同源物,在尼加罗尼亚南部的尼加罗米亚纳抑制了开花。 Nb每2小时在10μmolm-2 s-1或下R:fr(例如,0.6)的强度下降引起番茄开花和促进SP5G mRNA表达的透明延迟。通过随后的FR光刺激或更高的R:Fr处理来逆转由红光Nb和低R:Fr处理诱导的促进的SP5G mRNA表达。番茄PHYB1突变废除了Nb和下R的影响:Fr治疗在开花和SP5G mRNA表达上,表明该效果由番茄中的Phytochrome B1介导。结论我们的结果强烈表明SP5G mRNA抑制是Nb和下R的主要原因:番茄开花的FR影响。

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