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叶绿素合酶的表达也参与叶绿素生物合成的反馈调控。

Expression of chlorophyll synthase is also involved in feedback-control of chlorophyll biosynthesis.

作者信息

Shalygo Nikolai, Czarnecki Olaf, Peter Enrico, Grimm Bernhard

机构信息

Institut für Biologie/Pflanzenphysiologie, Humboldt-Universität zu Berlin, Philippstr. 13, Haus 12, 10115 Berlin, Germany.

出版信息

Plant Mol Biol. 2009 Nov;71(4-5):425-36. doi: 10.1007/s11103-009-9532-8. Epub 2009 Aug 13.

Abstract

At the last step of the chlorophyll biosynthetic pathway chlorophyll synthase (CHLG) esterifies chlorophyllide a and b with phytyl or geranyl-geranyl pyrophosphate in chloroplasts. Transgenic tobacco plants expressing CHLG RNA in sense and antisense orientation were examined for the effects of excessive and reduced ectopic CHLG expression, respectively, on the chlorophyll biosynthetic pathway and the expression of chlorophyll-binding proteins. Reduced chlorophyll synthase activity does not result in accumulation of chlorophyllide and caused reduced ALA formation and Mg and ferrochelatase activity, while CHLG overexpression correlated with enhanced ALA synthesizing capacity and more chelatase activities. The transcript levels of genes expressing proteins of chlorophyll biosynthesis and chlorophyll-binding proteins were down-regulated in response to reduced CHLG expression. Thus, reduced expression and activity of chlorophyll synthase caused a feedback-controlled inactivation of the initial and rate limiting step of the pathway leading to down regulation of the metabolic flow, while overexpression can mediate a stimulation of the pathway. Chlorophyll synthase is proposed to be important for the co-regulation of the entire pathway and the coordination of synthesis of chlorophyll and the chlorophyll-binding proteins.

摘要

在叶绿素生物合成途径的最后一步,叶绿素合酶(CHLG)在叶绿体中用植基或香叶基香叶基焦磷酸将叶绿素酸酯a和b酯化。分别检测了以正义和反义方向表达CHLG RNA的转基因烟草植株,以研究异位CHLG表达过量和减少对叶绿素生物合成途径以及叶绿素结合蛋白表达的影响。叶绿素合酶活性降低不会导致叶绿素酸酯积累,反而会导致δ-氨基乙酰丙酸(ALA)生成减少以及镁螯合酶和铁螯合酶活性降低,而CHLG过表达与增强的ALA合成能力和更多的螯合酶活性相关。响应CHLG表达降低,叶绿素生物合成相关蛋白和叶绿素结合蛋白的基因转录水平下调。因此,叶绿素合酶表达和活性降低导致该途径初始限速步骤的反馈控制失活,从而导致代谢流下调,而过表达则可介导该途径的刺激作用。叶绿素合酶被认为对于整个途径的共同调节以及叶绿素和叶绿素结合蛋白合成的协调很重要。

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