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UV-B增加活性光敏色素B以抑制高温下的热形态建成并增强UV-B胁迫耐受性。

UV-B increases active phytochrome B to suppress thermomorphogenesis and enhance UV-B stress tolerance at high temperatures.

作者信息

Hwang Geonhee, Lee Taedong, Park Jeonghyang, Paik Inyup, Lee Nayoung, Kim Yun Ju, Song Young Hun, Kim Woe-Yeon, Oh Eunkyoo

机构信息

Department of Life Sciences, Korea University, Seoul 02841, Korea.

US Army Engineer Research and Development Center, Austin, TX 39180, USA.

出版信息

Plant Commun. 2025 Jan 13;6(1):101142. doi: 10.1016/j.xplc.2024.101142. Epub 2024 Oct 10.

Abstract

Plants respond to slight increases in ambient temperature by altering their architecture, a phenomenon collectively termed thermomorphogenesis. Thermomorphogenesis helps mitigate the damage caused by potentially harmful high-temperature conditions and is modulated by multiple environmental factors. Among these factors, ultraviolet-B (UV-B) light has been shown to strongly suppress this response. However, the molecular mechanisms by which UV-B light regulates thermomorphogenesis and the physiological roles of the UV-B-mediated suppression remain poorly understood. Here, we show that UV-B light inhibits thermomorphogenesis through the UV RESISTANCE LOCUS8 (UVR8)-CONSTITUTIVE PHOTOMORPHOGENIC1 (COP1)-phytochrome B (phyB)/LONG HYPOCOTYL IN FAR RED 1 (HFR1) signaling pathway. We found that cop1 mutants maintain high levels of active phyB at high temperatures. Extensive genetic analyses revealed that the increased levels of phyB, HFR1, and CRY1 in cop1 mutants redundantly reduce both the level and the activity of PHYTOCHROME INTERACTING FACTOR4 (PIF4), a key positive regulator in thermomorphogenesis, thereby repressing this growth response. In addition, we found that UV-B light inactivates COP1 to enhance phyB stability and increase its photobody number. The UV-B-stabilized active phyB, in concert with HFR1, inhibits thermomorphogenesis by interfering with PIF4 activity. We further demonstrate that increased levels of active phyB enhance UV-B tolerance by promoting flavonoid biosynthesis and inhibiting thermomorphogenic growth. Taken together, our results elucidate that UV-B increases the levels of active phyB and HFR1 by inhibiting COP1 to suppress PIF4-mediated growth responses, which is crucial for plant tolerance to UV-B stress at high temperatures.

摘要

植物通过改变自身结构来响应环境温度的轻微升高,这一现象统称为热形态建成。热形态建成有助于减轻潜在有害高温条件造成的损害,并受到多种环境因素的调节。在这些因素中,紫外线-B(UV-B)光已被证明能强烈抑制这种反应。然而,UV-B光调节热形态建成的分子机制以及UV-B介导的抑制作用的生理作用仍知之甚少。在这里,我们表明UV-B光通过抗紫外线基因座8(UVR8)-组成型光形态建成1(COP1)-光敏色素B(phyB)/远红光下长下胚轴1(HFR1)信号通路抑制热形态建成。我们发现cop1突变体在高温下保持高水平的活性phyB。广泛的遗传分析表明,cop1突变体中phyB、HFR1和CRY1水平的增加会冗余降低热形态建成中的关键正向调节因子光敏色素相互作用因子4(PIF4)的水平和活性,从而抑制这种生长反应。此外,我们发现UV-B光使COP1失活,以增强phyB的稳定性并增加其光体数量。UV-B稳定的活性phyB与HFR1协同作用,通过干扰PIF4活性来抑制热形态建成。我们进一步证明,活性phyB水平的增加通过促进类黄酮生物合成和抑制热形态建成生长来增强对UV-B的耐受性。综上所述,我们的结果阐明,UV-B通过抑制COP1来增加活性phyB和HFR1的水平,从而抑制PIF4介导的生长反应,这对于植物在高温下耐受UV-B胁迫至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5663/11783897/0cf9eb3031b6/gr1.jpg

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