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Transposase-Derived Transcription Factors Regulate Light Signaling in Arabidopsis

机译:转座酶衍生的转录因子调节拟南芥中的光信号。

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摘要

Plants use light to optimize growth and development. The photoreceptor phytochrome A (phyA) mediates various far-red light-induced responses. We show that Arabidopsis FHY3 and FAR1, which encode two proteins related to Mutator-like transposases, act together to modulate phyA signaling by directly activating the transcription of FHY1 and FHL, whose products are essential for light-induced phyA nuclear accumulation and subsequent light responses. FHY3 and FAR1 have separable DNA binding and transcriptional activation domains that are highly conserved in Mutator-like transposases. Further, expression of FHY3 and FAR1 is negatively regulated by phyA signaling. We propose that FHY3 and FAR1 represent transcription factors that have been co-opted from an ancient Mutator-like transposase(s) to modulate phyA-signaling homeostasis in higher plants.
机译:植物利用光来优化生长和发育。感光细胞色素A(phyA)介导各种远红光诱导的响应。我们显示拟南芥FHY3和FAR1,其编码与Mutator样转座酶相关的两种蛋白质,共同作用,通过直接激活FHY1和FHL的转录来调节phyA信号传导,其产物对于光诱导phyA核积累和随后的光反应至关重要。 FHY3和FAR1具有可分离的DNA结合和转录激活域,在Mutator样转座酶中高度保守。此外,FHY3和FAR1的表达受到phyA信号的负调控。我们建议FHY3和FAR1代表转录因子,已从古代的Mutator-like转座酶中选出,以调节高等植物中的phyA信号稳态。

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