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OWL1:一种拟南芥 J 结构域蛋白,参与感知极低光通量。

OWL1: an Arabidopsis J-domain protein involved in perception of very low light fluences.

机构信息

Institute of Botany, Department for Biology I, Ludwig-Maximilians-Universität, 82152 Planegg-Martinsried, Germany.

出版信息

Plant Cell. 2009 Oct;21(10):3212-25. doi: 10.1105/tpc.109.066472. Epub 2009 Oct 6.

Abstract

To sense ambient light conditions in order to optimize their growth and development, plants employ a battery of photoreceptors responsive to light quality and quantity. Essential for the sensing of red and far-red (FR) light is the phytochrome family of photoreceptors. Among them, phytochrome A is special because it mediates responses to different light conditions, including both very low fluences (very low fluence response [VLFR]) and high irradiances (high irradiance response [HIR]). In contrast with the FR-HIR signaling pathway, in which several intermediates of the signaling pathway have been identified, specific components of the VLFR pathway remain unknown. Here, we describe owl1 (for orientation under very low fluences of light), a mutant that is specific for the VLFR, suggesting that VLFR and HIR pathways are genetically distinct, although some common mechanisms can be observed. OWL1 codes for a ubiquitous J-domain protein essential for germination, cotyledon opening, hypocotyl elongation, and deviation of the direction of hypocotyl growth from the vertical under very low light conditions. Additionally, we observed a flowering phenotype suggesting a role for the VLFR during the whole life cycle of a plant. OWL1 interacts with the basic helix-loop-helix HFR1 (LONG HYPOCOTYL IN FAR-RED) transcription factor, previously characterized as a component of the FR-HIR pathway. Both proteins are involved in the agravitropic response under FR light. We propose a central function of OWL1 in the VLFR pathway, which is essential for plant survival under unfavorable light conditions.

摘要

为了感知周围的光照条件,从而优化生长和发育,植物使用了一系列能够响应光质和光量的光受体。在感知红光和远红光(FR)光方面,光敏色素家族的光受体是必不可少的。其中,光敏色素 A 很特殊,因为它介导了对不同光照条件的响应,包括非常低的光强(极低光强反应 [VLFR])和高光强(高光强反应 [HIR])。与 FR-HIR 信号通路不同,该通路已经鉴定出了几个信号通路的中间产物,但 VLFR 通路的特定成分仍然未知。在这里,我们描述了 owl1(用于极低光强下的定向)突变体,该突变体是 VLFR 的特异性突变体,这表明 VLFR 和 HIR 途径在遗传上是不同的,尽管可以观察到一些共同的机制。OWL1 编码一种普遍存在的 J 结构域蛋白,对于萌发、子叶张开、下胚轴伸长和在极低光照条件下下胚轴生长方向偏离垂直方向是必需的。此外,我们观察到了一个开花表型,表明 VLFR 在植物的整个生命周期中都发挥作用。OWL1 与基本螺旋-环-螺旋 HFR1(远红光中的长下胚轴)转录因子相互作用,该转录因子先前被表征为 FR-HIR 途径的一个组成部分。这两种蛋白都参与了 FR 光下的向重力性反应。我们提出了 OWL1 在 VLFR 途径中的核心作用,该途径对于植物在不利的光照条件下的生存是必不可少的。

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