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DOF转录因子AtDof1.1(OBP2)是拟南芥中控制硫代葡萄糖苷生物合成的调控网络的一部分。

DOF transcription factor AtDof1.1 (OBP2) is part of a regulatory network controlling glucosinolate biosynthesis in Arabidopsis.

作者信息

Skirycz Aleksandra, Reichelt Michael, Burow Meike, Birkemeyer Claudia, Rolcik Jakub, Kopka Joachim, Zanor Maria Inès, Gershenzon Jonathan, Strnad Miroslav, Szopa Jan, Mueller-Roeber Bernd, Witt Isabell

机构信息

Max-Planck Institute of Molecular Plant Physiology, Cooperative Research Group, Am Mühlenberg 1, D-14476 Golm, Germany.

出版信息

Plant J. 2006 Jul;47(1):10-24. doi: 10.1111/j.1365-313X.2006.02767.x. Epub 2006 Jun 1.

Abstract

Glucosinolates are a group of secondary metabolites that function as defense substances against herbivores and micro-organisms in the plant order Capparales. Indole glucosinolates (IGS), derivatives of tryptophan, may also influence plant growth and development. In Arabidopsis thaliana, indole-3-acetaldoxime (IAOx) produced from tryptophan by the activity of two cytochrome P450 enzymes, CYP79B2 and CYP79B3, serves as a precursor for IGS biosynthesis but is also an intermediate in the biosynthetic pathway of indole-3-acetic acid (IAA). Another cytochrome P450 enzyme, CYP83B1, funnels IAOx into IGS. Although there is increasing information about the genes involved in this biochemical pathway, their regulation is not fully understood. OBP2 has recently been identified as a member of the DNA-binding-with-one-finger (DOF) transcription factors, but its function has not been studied in detail so far. Here we report that OBP2 is expressed in the vasculature of all Arabidopsis organs, including leaves, roots, flower stalks and petals. OBP2 expression is induced in response to a generalist herbivore, Spodoptera littoralis, and by treatment with the plant signalling molecule methyl jasmonate, both of which also trigger IGS accumulation. Constitutive and inducible over-expression of OBP2 activates expression of CYP83B1. In addition, auxin concentration is increased in leaves and seedlings of OBP2 over-expression lines relative to wild-type, and plant size is diminished due to a reduction in cell size. RNA interference-mediated OBP2 blockade leads to reduced expression of CYP83B1. Collectively, these data provide evidence that OBP2 is part of a regulatory network that regulates glucosinolate biosynthesis in Arabidopsis.

摘要

硫代葡萄糖苷是一类次生代谢产物,在十字花目植物中作为抵御食草动物和微生物的防御物质发挥作用。吲哚硫代葡萄糖苷(IGS)是色氨酸的衍生物,也可能影响植物的生长发育。在拟南芥中,由两种细胞色素P450酶CYP79B2和CYP79B3的活性从色氨酸产生的吲哚-3-乙醛肟(IAOx)是IGS生物合成的前体,但也是吲哚-3-乙酸(IAA)生物合成途径中的一个中间体。另一种细胞色素P450酶CYP83B1将IAOx导入IGS。尽管关于这条生化途径中涉及的基因的信息越来越多,但其调控机制尚未完全了解。OBP2最近被鉴定为单指DNA结合(DOF)转录因子家族的成员,但到目前为止其功能尚未得到详细研究。在这里我们报告,OBP2在拟南芥所有器官的维管系统中表达,包括叶片、根、花茎和花瓣。OBP2的表达受到多食性食草动物斜纹夜蛾的诱导,以及植物信号分子茉莉酸甲酯的处理诱导,这两者也会触发IGS的积累。OBP2的组成型和诱导型过表达激活CYP83B1的表达。此外,相对于野生型,OBP2过表达系的叶片和幼苗中生长素浓度增加,并且由于细胞大小减小,植株尺寸变小。RNA干扰介导的OBP2阻断导致CYP83B1表达降低。总的来说,这些数据提供了证据表明OBP2是拟南芥中调节硫代葡萄糖苷生物合成的调控网络的一部分。

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