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光敏色素信号转导:途径的表征与突变体的分离

Phytochrome signal-transduction: characterization of pathways and isolation of mutants.

作者信息

Barnes S A, Quaggio R B, Chua N H

机构信息

Laboratory of Plant Molecular Biology, Rockefeller University, New York, New York 10021-6399, USA.

出版信息

Philos Trans R Soc Lond B Biol Sci. 1995 Oct 30;350(1331):67-74. doi: 10.1098/rstb.1995.0139.

Abstract

The study of phytochrome signalling has yielded a wealth of data describing both the perception of light by the receptor, and the terminal steps in phytochrome-regulated gene expression by a number of transcription factors. We are now focusing on establishing the intervening steps linking phytochrome photoactivation to gene expression, and the regulation and interactions of these signalling pathways. Recent work has utilized both a pharmacological approach in phototrophic soybean suspension cultures and microinjection techniques in tomato to establish three distinct phytochrome signal-transduction pathways: (i) a calcium-dependent pathway that regulates the expression of genes encoding the chlorophyll a/b binding protein (CAB) and other components of photosystem II; (ii) a cGMP-dependent pathway that regulates the expression of the gene encoding chalcone synthase (CHS) and the production of anthocyanin pigments; and (iii) a pathway dependent upon both calcium and cGMP that regulates the expression of genes encoding components of photosystem I and is necessary for the production of mature chloroplasts. To study the components and the regulation of phytochrome signal-transduction pathways, mutants with altered photomorphogenic responses have been isolated by a number of laboratories. However, with several possible exceptions, little real progress has been made towards the isolation of mutants in positive regulatory elements of the phytochrome signal-transduction pathway. We have characterized a novel phytochrome A (PhyA)-mediated far-red light (FR) response in Arabidopsis seedlings which we are currently using to screen for specific phyA signal-transduction mutants.

摘要

对植物色素信号转导的研究已经产生了大量数据,这些数据既描述了受体对光的感知,也描述了多种转录因子在植物色素调节基因表达过程中的终端步骤。我们目前正专注于确定连接植物色素光激活与基因表达的中间步骤,以及这些信号通路的调节和相互作用。最近的研究工作利用了光合大豆悬浮培养物中的药理学方法和番茄中的显微注射技术,建立了三种不同的植物色素信号转导途径:(i)一种钙依赖性途径,调节编码叶绿素a/b结合蛋白(CAB)和光系统II其他成分的基因的表达;(ii)一种环鸟苷酸(cGMP)依赖性途径,调节编码查尔酮合酶(CHS)的基因的表达和花青素色素的产生;(iii)一种依赖于钙和cGMP的途径,调节编码光系统I成分的基因的表达,并且是成熟叶绿体产生所必需的。为了研究植物色素信号转导途径的组成成分和调节机制,许多实验室已经分离出了光形态建成反应改变的突变体。然而,除了几个可能的例外情况,在分离植物色素信号转导途径正调控元件中的突变体方面几乎没有取得实际进展。我们已经对拟南芥幼苗中一种新的由植物色素A(PhyA)介导的远红光(FR)反应进行了表征,我们目前正在利用这一反应来筛选特定的phyA信号转导突变体。

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