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首页> 外文期刊>The Plant Cell >Arabidopsis FHY3 and HY5 positively mediate induction of COP1 transcription in response to photomorphogenic UV-B light.
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Arabidopsis FHY3 and HY5 positively mediate induction of COP1 transcription in response to photomorphogenic UV-B light.

机译:拟南芥FHY3和HY5积极介导COP1转录的诱导,以响应光形态发生的UV-B光。

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As sessile organisms, higher plants have evolved the capacity to sense and interpret diverse light signals to modulate their development. In Arabidopsis thaliana, low-intensity and long-wavelength UV-B light is perceived as an informational signal to mediate UV-B-induced photomorphogenesis. Here, we report that the multifunctional E3 ubiquitin ligase, CONSTITUTIVE PHOTOMORPHOGENESIS1 ( COP1), a known key player in UV-B photomorphogenic responses, is also a UV-B-inducible gene. Two transcription factors, FAR-RED ELONGATED HYPOCOTYL3 (FHY3) and ELONGATED HYPOCOTYL5 (HY5), directly bind to distinct regulatory elements within the COP1 promoter, which are essential for the induction of the COP1 gene mediated by photomorphogenic UV-B signaling. Absence of FHY3 results in impaired UV-B-induced hypocotyl growth and reduced tolerance against damaging UV-B. Thus, FHY3 positively regulates UV-B-induced photomorphogenesis by directly activating COP1 transcription, while HY5 promotes COP1 expression via a positive feedback loop. Furthermore, FHY3 and HY5 physically interact with each other, and this interaction is diminished by UV-B. Together, our findings reveal that COP1 gene expression in response to photomorphogenic UV-B is controlled by a combinatorial regulation of FHY3 and HY5, and this UV-B-specific working mode of FHY3 and HY5 is distinct from that in far-red light and circadian conditions.
机译:作为无柄生物,高等植物已经进化出感知和解释各种光信号以调节其发育的能力。在拟南芥中,低强度和长波长的UV-B光被认为是介导UV-B诱导的光形态发生的信息信号。在这里,我们报告说,多功能E3泛素连接酶,组成性光致发光1(COP1),也是已知的UV-B光形态发生反应的关键参与者,也是UV-B诱导型基因。两个转录因子FAR-RED ELONGATED HYPOCOTYL3(FHY3)和ELONGATED HYPOCOTYL5(HY5)直接与COP1启动子中的不同调控元件结合,这对于诱导由光形态发生UV-B信号介导的COP1基因至关重要。 FHY3的缺乏会导致UV-B诱导的下胚轴生长受损,并降低对破坏性UV-B的耐受性。因此,FHY3通过直接激活COP1转录正调控UV-B诱导的光形态发生,而HY5通过正反馈回路促进COP1表达。此外,FHY3和HY5彼此物理相互作用,而UV-B减弱了这种相互作用。总之,我们的发现表明,响应光形态发生UV-B的COP1基因表达受FHY3和HY5的组合调节控制,FHY3和HY5的这种UV-B特异性工作模式不同于远红外光和昼夜节律。

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