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番茄质体的稳定遗传转化及外源蛋白在果实中的表达

Stable genetic transformation of tomato plastids and expression of a foreign protein in fruit.

作者信息

Ruf S, Hermann M, Berger I J, Carrer H, Bock R

机构信息

Institut für Biologie III, Universität Freiburg, Schänzlestrasse 1, D-79104 Freiburg, Germany.

出版信息

Nat Biotechnol. 2001 Sep;19(9):870-5. doi: 10.1038/nbt0901-870.

Abstract

Transgenic chloroplasts offer unique advantages in plant biotechnology, including high-level foreign protein expression, absence of epigenetic effects, and gene containment due to the lack of transgene transmission through pollen. However, broad application of plastid genome engineering in biotechnology has been largely hampered by both the lack of chloroplast transformation systems for major crop plants and the usually low plastid gene expression levels in nongreen tissues such as fruits, tubers, and other storage organs. Here we describe the development of a plastid transformation system for tomato, Lycopersicon esculentum. This is the first report on the generation of fertile transplastomic plants in a food crop with an edible fruit. We show that chromoplasts in the tomato fruit express the transgene to approximately 50% of the expression levels in leaf chloroplasts. Given the generally very high foreign protein accumulation rates that can be achieved in transgenic chloroplasts (>40% of the total soluble protein), this system paves the way to efficient production of edible vaccines, pharmaceuticals, and antibodies in tomato.

摘要

转基因叶绿体在植物生物技术中具有独特优势,包括高水平的外源蛋白表达、无表观遗传效应以及由于花粉不传播转基因而实现基因封闭。然而,质体基因组工程在生物技术中的广泛应用在很大程度上受到了主要作物缺乏叶绿体转化系统以及在果实、块茎和其他贮藏器官等非绿色组织中质体基因表达水平通常较低的阻碍。在此,我们描述了一种用于番茄(Lycopersicon esculentum)的质体转化系统的开发。这是关于在具有可食用果实的粮食作物中产生可育的转质体植物的首次报道。我们表明,番茄果实中的有色体中外源基因的表达水平约为叶片叶绿体中表达水平的50%。鉴于转基因叶绿体中通常可实现非常高的外源蛋白积累率(>总可溶性蛋白的40%),该系统为在番茄中高效生产可食用疫苗、药物和抗体铺平了道路。

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