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拟南芥中的转录因子类AGAMOUS 12促进长春花悬浮细胞中的组织样组织形成和生物碱生物合成。

Transcription factor Agamous-like 12 from Arabidopsis promotes tissue-like organization and alkaloid biosynthesis in Catharanthus roseus suspension cells.

作者信息

Montiel Grégory, Breton Christian, Thiersault Martine, Burlat Vincent, Jay-Allemand Christian, Gantet Pascal

机构信息

Université de Tours Unité sous Contrat reconnue par l'Institut National de la Recherche Agronomique, Facteurs de Transcription et Ingénierie Métabolique Végétale, UFR des Sciences et Techniques et UFR des Sciences Pharmaceutiques, Tours, France.

出版信息

Metab Eng. 2007 Mar;9(2):125-32. doi: 10.1016/j.ymben.2006.10.001. Epub 2006 Oct 21.

Abstract

In Catharanthus roseus, monomeric terpenoid indole alkaloids (TIAs) are biosynthesized in specific tissues, particularly in roots, but failed to be produced by in vitro undifferentiated suspension cells. In this paper, we describe the impact of the root-specific MADS-box transcription factor Agamous-like 12 (Agl12) from Arabidopsis thaliana on the differentiation of suspension cells from C. roseus. The expression of Agl12 is sufficient to promote an organization of suspension cells into globular parenchyma-like aggregates but is insufficient by itself to induce complete morphological root differentiation. Agl12 expression selectively increases the expression of genes encoding enzymes involved in the early biosynthesis steps of the terpenic precursor of alkaloids. The transgenic cell lines expressing Agl12 produced significant amounts of ajmalicine, an antihypertensive TIA that normally accumulates in C. roseus roots. The present paper indicates that transcription factors involved in tissue or organ differentiation may constitute new metabolic engineering tools that could help to design in vitro cultured cells able to produce specific valuable secondary metabolites.

摘要

在长春花中,单体萜类吲哚生物碱(TIAs)在特定组织中生物合成,尤其是在根中,但体外未分化的悬浮细胞无法产生这些生物碱。在本文中,我们描述了来自拟南芥的根特异性MADS盒转录因子类AGAMOUS 12(Agl12)对长春花悬浮细胞分化的影响。Agl12的表达足以促进悬浮细胞组织成球状薄壁组织样聚集体,但仅凭其自身不足以诱导完全的形态学根分化。Agl12的表达选择性地增加了编码参与生物碱萜类前体早期生物合成步骤的酶的基因的表达。表达Agl12的转基因细胞系产生了大量的阿吗碱,这是一种通常在长春花根中积累的降压TIAs。本文表明,参与组织或器官分化的转录因子可能构成新的代谢工程工具,有助于设计能够产生特定有价值次生代谢物的体外培养细胞。

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