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细胞色素P450 90C1(CYP90C1)和细胞色素P450 90D1(CYP90D1)参与拟南芥油菜素内酯生物合成途径的不同步骤。

CYP90C1 and CYP90D1 are involved in different steps in the brassinosteroid biosynthesis pathway in Arabidopsis thaliana.

作者信息

Kim Gyung-Tae, Fujioka Shozo, Kozuka Toshiaki, Tax Frans E, Takatsuto Suguru, Yoshida Shigeo, Tsukaya Hirokazu

机构信息

Faculty of Plant Biotechnology, Dong-A University, Pusan 604-714, Korea.

出版信息

Plant J. 2005 Mar;41(5):710-21. doi: 10.1111/j.1365-313X.2004.02330.x.

Abstract

Brassinosteroids (BRs) are plant hormones that are essential for a wide range of developmental processes in plants. Many of the genes responsible for the early reactions in the biosynthesis of BRs have recently been identified. However, several genes for enzymes that catalyze late steps in the biosynthesis pathways of BRs remain to be identified, and only a few genes responsible for the reactions that produce bioactive BRs have been identified. We found that the ROTUNDIFOLIA3 (ROT3) gene, encoding the enzyme CYP90C1, which was specifically involved in the regulation of leaf length in Arabidopsis thaliana, was required for the late steps in the BR biosynthesis pathway. ROT3 appears to be required for the conversion of typhasterol to castasterone, an activation step in the BR pathway. We also analyzed the gene most closely related to ROT3, CYP90D1, and found that double mutants for ROT3 and CYP90D1 had a severe dwarf phenotype, whereas cyp90d1 single knockout mutants did not. BR profiling in these mutants revealed that CYP90D1 was also involved in BR biosynthesis pathways. ROT3 and CYP90D1 were expressed differentially in leaves of A. thaliana, and the mutants for these two genes differed in their defects in elongation of hypocotyls under light conditions. The expression of CYP90D1 was strongly induced in leaf petioles in the dark. The results of the present study provide evidence that the two cytochrome P450s, CYP90C1 and CYP90D1, play distinct roles in organ-specific environmental regulation of the biosynthesis of BRs.

摘要

油菜素甾醇(BRs)是植物激素,对植物的多种发育过程至关重要。最近已鉴定出许多负责BR生物合成早期反应的基因。然而,催化BR生物合成途径后期步骤的几种酶的基因仍有待鉴定,并且仅鉴定出少数负责产生生物活性BR反应的基因。我们发现,编码CYP90C1酶的ROTUNDIFOLIA3(ROT3)基因,该基因特别参与拟南芥叶长的调节,是BR生物合成途径后期步骤所必需的。ROT3似乎是将豆甾醇转化为油菜素甾酮所必需的,这是BR途径中的一个激活步骤。我们还分析了与ROT3关系最密切的基因CYP90D1,发现ROT3和CYP90D1的双突变体具有严重的矮化表型,而cyp90d1单敲除突变体则没有。这些突变体中的BR分析表明CYP90D1也参与BR生物合成途径。ROT3和CYP90D1在拟南芥叶片中差异表达,这两个基因的突变体在光照条件下下胚轴伸长缺陷方面有所不同。CYP90D1的表达在黑暗中的叶柄中强烈诱导。本研究结果提供了证据,证明两种细胞色素P450,CYP90C1和CYP90D1,在BR生物合成的器官特异性环境调节中发挥不同作用。

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