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一种源自ibAGP1启动子及其转运肽的强大组成型基因表达系统。

A strong constitutive gene expression system derived from ibAGP1 promoter and its transit peptide.

作者信息

Kwak Man Sup, Oh Mi-Joung, Lee Shin Woo, Shin Jeong Sheop, Paek Kyung-Hee, Bae Jung Myung

机构信息

School of Life Sciences and Biotechnology, Korea University, Seoul 136-701, South Korea.

出版信息

Plant Cell Rep. 2007 Aug;26(8):1253-62. doi: 10.1007/s00299-007-0349-0. Epub 2007 Apr 4.

Abstract

To develop a strong constitutive gene expression system, the activities of ibAGP1 promoter and its transit peptide were investigated using transgenic Arabidopsis and a GUS reporter gene. The ibAGP1 promoter directed GUS expression in almost entire tissues including rosette leaf, inflorescence stem, inflorescence, cauline leaf and root, suggesting that the ibAGP1 promoter is a constitutive promoter. GUS expression mediated by ibAGP1 promoter was weaker than that by CaMV35S promoter in all tissue types, but when GUS protein was targeted to plastids with the aid of the ibAGP1 transit peptide, GUS levels increased to higher levels in lamina, petiole and cauline leaf compared to those produced by CaMV35S promoter. The enhancing effect of ibAGP1 transit peptide on the accumulation of foreign protein was tissue-specific; accumulation was high in lamina and inflorescence, but low in root and primary inflorescence stem. The transit peptide effect in the leaves was maintained highly regardless of developmental stages of plants. The ibAGP1 promoter and its transit peptide also directed strong GUS gene expression in transiently expressed tobacco leaves. These results suggest that the ibAGP1 promoter and its transit peptide are a strong constitutive foreign gene expression system for transgenesis of dicot plants.

摘要

为构建一个强大的组成型基因表达系统,利用转基因拟南芥和GUS报告基因对ibAGP1启动子及其转运肽的活性进行了研究。ibAGP1启动子指导GUS在几乎所有组织中表达,包括莲座叶、花序茎、花序、茎生叶和根,这表明ibAGP1启动子是一个组成型启动子。在所有组织类型中,ibAGP1启动子介导的GUS表达均弱于CaMV35S启动子,但当借助ibAGP1转运肽将GUS蛋白靶向质体时,与CaMV35S启动子相比,叶片、叶柄和茎生叶中的GUS水平升高到更高水平。ibAGP1转运肽对外源蛋白积累的增强作用具有组织特异性;在叶片和花序中积累量高,而在根和初生花序茎中积累量低。无论植物处于何种发育阶段,转运肽在叶片中的作用都能高度维持。ibAGP1启动子及其转运肽在瞬时表达的烟草叶片中也能指导GUS基因的强烈表达。这些结果表明,ibAGP1启动子及其转运肽是用于双子叶植物转基因的强大组成型外源基因表达系统。

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