首页> 美国卫生研究院文献>other >Sorghum Phytochrome B Inhibits Flowering in Long Days by Activating Expression of SbPRR37 and SbGHD7 Repressors of SbEHD1 SbCN8 and SbCN12
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Sorghum Phytochrome B Inhibits Flowering in Long Days by Activating Expression of SbPRR37 and SbGHD7 Repressors of SbEHD1 SbCN8 and SbCN12

机译:高粱植物色素B通过激活SbPRR37和SbGHD7SbEHD1SbCN8和SbCN12的阻遏物表达来长时间抑制开花

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摘要

Light signaling by phytochrome B in long days inhibits flowering in sorghum by increasing expression of the long day floral repressors PSEUDORESPONSE REGULATOR PROTEIN (SbPRR37, Ma1) and GRAIN NUMBER, PLANT HEIGHT AND HEADING DATE 7 (SbGHD7, Ma6). SbPRR37 and SbGHD7 RNA abundance peaks in the morning and in the evening of long days through coordinate regulation by light and output from the circadian clock. 58 M, a phytochrome B deficient (phyB-1, ma3R) genotype, flowered ∼60 days earlier than 100 M (PHYB, Ma3) in long days and ∼11 days earlier in short days. Populations derived from 58 M (Ma1, ma3R, Ma5, ma6) and R.07007 (Ma1, Ma3, ma5, Ma6) varied in flowering time due to QTL aligned to PHYB/phyB-1 (Ma3), Ma5, and GHD7/ghd7-1 (Ma6). PHYC was proposed as a candidate gene for Ma5 based on alignment and allelic variation. PHYB and Ma5 (PHYC) were epistatic to Ma1 and Ma6 and progeny recessive for either gene flowered early in long days. Light signaling mediated by PhyB was required for high expression of the floral repressors SbPRR37 and SbGHD7 during the evening of long days. In 100 M (PHYB) the floral activators SbEHD1, SbCN8 and SbCN12 were repressed in long days and de-repressed in short days. In 58 M (phyB-1) these genes were highly expressed in long and short days. Furthermore, SbCN15, the ortholog of rice Hd3a (FT), is expressed at low levels in 100 M but at high levels in 58 M (phyB-1) regardless of day length, indicating that PhyB regulation of SbCN15 expression may modify flowering time in a photoperiod-insensitive manner.
机译:植物色素B在长日中发出的光信号通过增加长日花阻抑剂PSEUDORESPONSE REGULATOR蛋白质(SbPRR37,Ma1)和谷物编号,植物高度和抽穗日期7(SbGHD7,Ma6)的表达来抑制高粱的开花。 SbPRR37和SbGHD7 RNA丰度在长日早晨和傍晚通过光和生物钟输出的坐标调节达到高峰。 58 M是一种缺乏植物色素B的基因型(phyB-1,ma3 R ),在长日中比100 M(PHYB,Ma3)早约60天开花,而短日前约11天开花。由于与PHYB / phyB-1对齐的QTL(QTL),来自58 M(Ma1,ma3 R ,Ma5,ma6)和R.07007(Ma1,Ma3,ma5,Ma6)的种群的开花时间有所不同。 Ma3),Ma5和GHD7 / ghd7-1(Ma6)。基于比对和等位基因变异,提出了PHYC作为 Ma5 的候选基因。 PHYB Ma5 PHYC )对 Ma1 Ma6 具有上位性,后代隐性因为这两个基因早就开花了。 PhyB介导的光信号传导是长日晚间高表达花卉阻遏物 SbPRR37 SbGHD7 所必需的。在100 M( PHYB )中,花激活剂 SbEHD1 SbCN8 SbCN12 在很长的时间内被抑制,在短时间内压抑。在58 M( phyB-1 )中,这些基因在长日和短日中均高表达。此外,水稻Hd3a(FT)的直系同源物 SbCN15 在低水平时均以100 M表达,而在58 M中均以高水平( phyB-1 )表达。长度,表明 SbCN15 表达的PhyB调节可能以对光周期不敏感的方式改变开花时间。

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