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BBX19 Interacts with CONSTANS to Repress FLOWERING LOCUS T Transcription Defining a Flowering Time Checkpoint in Arabidopsis

机译:BBX19与CONSTANS相互作用以抑制花丝T转录在拟南芥中定义开花时间检查点

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摘要

The timely transition of vegetative to reproductive development is coordinated through quantitative regulation of floral pathway genes in response to physiological and environmental cues. Here, we show that the circadian-controlled expression of the Arabidopsis thaliana floral transition regulators FLOWERING LOCUS T (FT) and CONSTANS (CO) is antiphasic to that of BBX19, a transcription factor with two B-Box motifs. Diminished expression of BBX19 by RNA interference accelerates flowering, and constitutive expression of BBX19 delays flowering under inductive photoperiods. This delay is not accompanied by the alteration of CO expression levels but rather by a reduction of transcript levels of FT and the FT-regulated genes SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1, LEAFY, and FRUITFUL. Similar to CO, BBX19 is expressed in vasculature. BBX19 and CO colocalize in the nucleus and interact physically in vivo. In transient assays, coinfiltration of 10-fold more CO overcomes the BBX19-mediated repression of FT activation. Substitution of the conserved Cys-25 to Ser in the BBX19 Box1 motif abolishes the BBX19–CO interaction and eliminates the negative regulation of flowering time, while the analogous C76S substitution in the Box2 motif is ineffective. Together, these results implicate BBX19 as a circadian clock output that depletes the active CO pool to accurately monitor daylength and precisely time FT expression.
机译:营养状态向生殖发育的及时过渡通过响应生理和环境线索的花卉途径基因的定量调节来协调。在这里,我们显示拟南芥花卉过渡调节剂FLOWERING LOCUS T(FT)和CONSTANS(CO)的昼夜节律控制表达与BBX19(具有两个B-Box图案的转录因子)相反。 RNA干扰导致的BBX19表达减少会加速开花,而在感应光周期下BBX19的组成型表达会延迟开花。这种延迟并不伴随着CO表达水平的改变,而是伴随着FT转录水平的降低以及FT调控的CONSTANS1,LEAFY和FRUITFUL过表达基因SUPPRESSOR的降低。类似于CO,BBX19在脉管系统中表达。 BBX19和CO在细胞核中共定位并在体内发生物理相互作用。在瞬态分析中,CO的共滤超过10倍,克服了BBX19介导的FT激活抑制。 BBX19 Box1基序中保守的Cys-25取代Ser消除了BBX19-CO相互作用,消除了开花时间的负调控,而Box2基序中类似的C76S替代无效。总之,这些结果表明BBX19是昼夜节律的时钟输出,它耗尽了活动的CO池,从而可以准确地监控日长和时间FT的精确表达。

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