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水稻中叶绿素a加氧酶基因的差异调控

Differential regulation of chlorophyll a oxygenase genes in rice.

作者信息

Lee Sichul, Kim Jin-Hong, Yoo Eun Sang, Lee Choon-Hwan, Hirochika Hirohiko, An Gynheung

机构信息

National Research Laboratory of Plant Functional Genomics, Division of Molecular and Life Sciences, Pohang University of Science and Technology (POSTECH), Pohang, 790-784, Korea.

出版信息

Plant Mol Biol. 2005 Apr;57(6):805-18. doi: 10.1007/s11103-005-2066-9.

Abstract

Chlorophyll b is synthesized from chlorophyll a by chlorophyll a oxygenase. We have identified two genes (OsCAO1 and OsCAO2) from the rice genome that are highly homologous to previously studied chlorophyll a oxygenase (CAO) genes. They are positioned in tandem, probably resulting from recent gene duplications. The proteins they encode contain two conserved functional motifs - the Rieske Fe-sulfur coordinating center and a non-heme mononuclear Fe-binding site. OsCAO1 is induced by light and is preferentially expressed in photosynthetic tissues. Its mRNA level decreases when plants are grown in the dark. In contrast, OsCAO2 mRNA levels are higher under dark conditions, and its expression is down-regulated by exposure to light. To elucidate the physiological function of the CAO genes, we have isolated knockout mutant lines tagged by T-DNA or Tos17. Mutant plants containing a T-DNA insertion in the first intron of the OsCAO1 gene have pale green leaves, indicating chlorophyll b deficiency. We have also isolated a pale green mutant with a Tos17 insertion in that OsCAO1 gene. In contrast, OsCAO2 knockout mutant leaves do not differ significantly from the wild type. These results suggest that OsCAO1 plays a major role in chlorophyll b biosynthesis, and that OsCAO2 may function in the dark.

摘要

叶绿素b由叶绿素a加氧酶从叶绿素a合成而来。我们从水稻基因组中鉴定出两个基因(OsCAO1和OsCAO2),它们与先前研究的叶绿素a加氧酶(CAO)基因高度同源。它们串联排列,可能是近期基因复制的结果。它们编码的蛋白质包含两个保守的功能基序—— Rieske铁硫配位中心和一个非血红素单核铁结合位点。OsCAO1受光诱导,优先在光合组织中表达。当植物在黑暗中生长时,其mRNA水平下降。相反,OsCAO2的mRNA水平在黑暗条件下较高,其表达受光照下调。为了阐明CAO基因的生理功能,我们分离了由T-DNA或Tos17标记的敲除突变体系。在OsCAO1基因第一个内含子中含有T-DNA插入的突变植物叶片呈淡绿色,表明叶绿素b缺乏。我们还分离出了一个在该OsCAO1基因中有Tos17插入的淡绿色突变体。相比之下,OsCAO2敲除突变体的叶片与野生型没有显著差异。这些结果表明,OsCAO1在叶绿素b生物合成中起主要作用,而OsCAO2可能在黑暗中发挥作用。

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