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八氢番茄红素去饱和酶基因的破坏通过损害叶绿素、类胡萝卜素和赤霉素的生物合成,导致拟南芥出现白化和矮化表型。

Disruption of phytoene desaturase gene results in albino and dwarf phenotypes in Arabidopsis by impairing chlorophyll, carotenoid, and gibberellin biosynthesis.

作者信息

Qin Genji, Gu Hongya, Ma Ligeng, Peng Yiben, Deng Xing Wang, Chen Zhangliang, Qu Li-Jia

机构信息

Peking-Yale Joint Center for Plant Molecular Genetics and Agrobiotechnology, National Laboratory for Protein Engineering and Plant Genetic Engineering, College of Life Sciences, Peking University, Beijing 100871, China.

出版信息

Cell Res. 2007 May;17(5):471-82. doi: 10.1038/cr.2007.40.

Abstract

Carotenoids play an important role in many physiological processes in plants and the phytoene desaturase gene (PDS3) encodes one of the important enzymes in the carotenoid biosynthesis pathway. Here we report the identification and analysis of a T-DNA insertion mutant of PDS3 gene. Functional complementation confirmed that both the albino and dwarf phenotypes of the pds3 mutant resulted from functional disruption of the PDS3 gene. Chloroplast development was arrested at the proplastid stage in the pds3 mutant. Further analysis showed that high level of phytoene was accumulated in the pds3 mutant. Addition of exogenous GA(3) could partially rescue the dwarf phenotype, suggesting that the dwarf phenotype of the pds3 mutant might be due to GA deficiency. Microarray and RT-PCR analysis showed that disrupting PDS3 gene resulted in gene expression changes involved in at least 20 metabolic pathways, including the inhibition of many genes in carotenoid, chlorophyll, and GA biosynthesis pathways. Our data suggest that the accumulated phytoene in the pds3 mutant might play an important role in certain negative feedbacks to affect gene expression of diverse cellular pathways.

摘要

类胡萝卜素在植物的许多生理过程中发挥着重要作用,而八氢番茄红素去饱和酶基因(PDS3)编码类胡萝卜素生物合成途径中的一种重要酶。在此,我们报告了PDS3基因T-DNA插入突变体的鉴定与分析。功能互补证实,pds3突变体的白化和矮化表型均由PDS3基因的功能破坏所致。pds3突变体的叶绿体发育在质体前体阶段停滞。进一步分析表明,pds3突变体中积累了高水平的八氢番茄红素。添加外源赤霉素(GA3)可部分挽救矮化表型,这表明pds3突变体的矮化表型可能是由于赤霉素缺乏所致。微阵列和RT-PCR分析表明,破坏PDS3基因导致至少20条代谢途径的基因表达发生变化,包括类胡萝卜素、叶绿素和赤霉素生物合成途径中许多基因的抑制。我们的数据表明,pds3突变体中积累的八氢番茄红素可能在某些负反馈中发挥重要作用,从而影响多种细胞途径的基因表达。

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