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拟南芥叶绿体psbD启动子的结构与蓝光响应转录

Structure and blue-light-responsive transcription of a chloroplast psbD promoter from Arabidopsis thaliana.

作者信息

Hoffer P H, Christopher D A

机构信息

Department of Plant Molecular Physiology, University of Hawaii at Manoa, Honolulu 96822, USA.

出版信息

Plant Physiol. 1997 Sep;115(1):213-22. doi: 10.1104/pp.115.1.213.

Abstract

We characterized the effects of light on psbD transcription and mRNA levels during chloroplast development in Arabidopsis thaliana. After 6 to 12 hours of illumination of dark-grown seedlings, two psbD mRNAs were detected and their 5' ends were mapped to positions -550 and -190 bp upstream from the psbD translational start codon. Their kinetics of accumulation resembled the accumulation of chloroplast psbA and rbcL mRNAs but differed from the accumulation of the nuclear-encoded Lhcb and Chs mRNAs. A third psbD mRNA with its 5' ends at position -950 accumulated after illumination of > 180 h. The 5' ends of this transcript were mapped to a nucleotide sequence that is highly conserved with functional sequences in the barley (Hordeum vulgare) blue-light-responsive promoter (BLRP). Transcription from the Arabidopsis psbD promoter was 3-fold higher in blue relative to red light, whereas red and blue light affected total chloroplast, rbcL, and 16S rDNA transcription similarly. This study shows that transcription of Arabidopsis psbD is mediated by a BLRP and suggests that psbD genes in other land plants are regulated by a common blue-light-signaling pathway. Isolating the BLRP from Arabidopsis will allow molecular genetic studies aimed at identifying the pertinent photoreceptor and components of this phototransduction pathway.

摘要

我们研究了光对拟南芥叶绿体发育过程中psbD转录和mRNA水平的影响。对黑暗中生长的幼苗进行6至12小时光照后,检测到两种psbD mRNA,其5'端定位于psbD翻译起始密码子上游-550和-190 bp处。它们的积累动力学类似于叶绿体psbA和rbcL mRNA的积累,但不同于核编码的Lhcb和Chs mRNA的积累。在光照超过180小时后,积累了一种5'端位于-950位置的第三种psbD mRNA。该转录本的5'端定位于与大麦(Hordeum vulgare)蓝光响应启动子(BLRP)中的功能序列高度保守的核苷酸序列。拟南芥psbD启动子的转录在蓝光下相对于红光高出3倍,而红光和蓝光对总叶绿体、rbcL和16S rDNA转录的影响相似。这项研究表明,拟南芥psbD的转录由BLRP介导,并表明其他陆地植物中的psbD基因受共同的蓝光信号通路调控。从拟南芥中分离出BLRP将有助于进行分子遗传学研究,以鉴定相关的光感受器和该光转导途径的组成部分。

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