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拟南芥fhl/fhy1双突变体揭示了光敏色素A独特的细胞质作用。

Arabidopsis fhl/fhy1 double mutant reveals a distinct cytoplasmic action of phytochrome A.

作者信息

Rösler Jutta, Klein Ilse, Zeidler Mathias

机构信息

Department of Plant Physiology, Justus Liebig University Giessen, Senckenbergstrasse 3, 35390 Giessen, Germany.

出版信息

Proc Natl Acad Sci U S A. 2007 Jun 19;104(25):10737-42. doi: 10.1073/pnas.0703855104. Epub 2007 Jun 12.

Abstract

Phytochrome A (phyA) plays an important role during germination and early seedling development. Because phyA is the primary photoreceptor for the high-irradiance response and the very-low-fluence response, it can trigger development not only in red and far-red (FR) light but also in a wider range of light qualities. Although phyA action is generally associated with translocation to the nucleus and regulation of transcription, there is evidence for additional cytoplasmic functions. Because nuclear accumulation of phyA has been shown to depend on far-red-elongated hypocotyl 1 (FHY1) and FHL (FHY1-like), investigation of phyA function in a double fhl/fhy1 mutant might be valuable in revealing the mechanism of phyA translocation and possible cytoplasmic functions. In fhl/fhy1, the FR-triggered nuclear translocation of phyA could no longer be detected but could be restored by transgenic expression of CFP:FHY1. Whereas the fhl/fhy1 mutant showed a phyA phenotype in respect to hypocotyl elongation and cotyledon opening under high-irradiance response conditions as well as a typical phyA germination phenotype under very-low-fluence response conditions, fhl/fhy1 showed no phenotype with respect to the phyA-dependent abrogation of negative gravitropism in blue light and in red-enhanced phototropism, demonstrating clear cytoplasmic functions of phyA. Disturbance of phyA nuclear import in fhl/fhy1 led to formation of FR-induced phyA:GFP cytoplasmic foci resembling the sequestered areas of phytochrome. FHY1 and FHL play crucial roles in phyA nuclear translocation and signaling. Thus the double-mutant fhl/fhy1 allows nuclear and cytoplasmic phyA functions to be separated, leading to the novel identification of cytoplasmic phyA responses.

摘要

光敏色素A(phyA)在种子萌发和幼苗早期发育过程中发挥着重要作用。由于phyA是高辐照度反应和极低光通量反应的主要光感受器,它不仅能在红光和远红光(FR)下触发植物发育,还能在更广泛的光质条件下发挥作用。尽管phyA的作用通常与向细胞核的转运和转录调控有关,但有证据表明它还具有其他细胞质功能。由于已证明phyA的核积累依赖于远红光伸长下胚轴1(FHY1)和FHL(类FHY1),因此研究双突变体fhl/fhy1中phyA的功能可能有助于揭示phyA转运机制和潜在的细胞质功能。在fhl/fhy1突变体中,无法检测到FR触发的phyA核转运,但通过转染表达CFP:FHY1可以恢复。虽然fhl/fhy1突变体在高辐照度反应条件下,下胚轴伸长和子叶开放方面表现出phyA表型,在极低光通量反应条件下表现出典型的phyA萌发表型,但fhl/fhy1在蓝光下phyA依赖的负向重力性消除和红光增强的向光性方面没有表型,这表明phyA具有明确的细胞质功能。fhl/fhy1中phyA核输入的干扰导致形成FR诱导的phyA:GFP细胞质焦点,类似于光敏色素的隔离区域。FHY1和FHL在phyA核转运和信号传导中起关键作用。因此,双突变体fhl/fhy1能够区分phyA的核功能和细胞质功能,从而首次鉴定出phyA的细胞质反应。

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