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过表达赋予强除草剂耐受性的细菌4-羟基苯丙酮酸双加氧酶的大豆和无标记烟草质体转化体的产生与鉴定

Generation and characterization of soybean and marker-free tobacco plastid transformants over-expressing a bacterial 4-hydroxyphenylpyruvate dioxygenase which provides strong herbicide tolerance.

作者信息

Dufourmantel Nathalie, Dubald Manuel, Matringe Michel, Canard Hélène, Garcon Frédéric, Job Claudette, Kay Elisabeth, Wisniewski Jean-Pierre, Ferullo Jean-Marc, Pelissier Bernard, Sailland Alain, Tissot Ghislaine

机构信息

Bayer BioScience, 14-20 rue Pierre Baizet, BP9163, 69263 Lyon Cedex 09, France.

出版信息

Plant Biotechnol J. 2007 Jan;5(1):118-33. doi: 10.1111/j.1467-7652.2006.00226.x.

Abstract

Plant 4-hydroxyphenylpyruvate dioxygenase (HPPD) is part of the biosynthetic pathway leading to plastoquinone and vitamin E. This enzyme is also the molecular target of various new bleaching herbicides for which genetically engineered tolerant crops are being developed. We have expressed a sensitive bacterial hppd gene from Pseudomonas fluorescens in plastid transformants of tobacco and soybean and characterized in detail the recombinant lines. HPPD accumulates to approximately 5% of total soluble protein in transgenic chloroplasts of both species. As a result, the soybean and tobacco plastid transformants acquire a strong herbicide tolerance, performing better than nuclear transformants. In contrast, the over-expression of HPPD has no significant impact on the vitamin E content of leaves or seeds, quantitatively or qualitatively. A new strategy is presented and exemplified in tobacco which allows the rapid generation of antibiotic marker-free plastid transformants containing the herbicide tolerance gene only. This work reports, for the first time, the plastome engineering for herbicide tolerance in a major agronomic crop, and a technology leading to marker-free lines for this trait.

摘要

植物4-羟基苯丙酮酸双加氧酶(HPPD)是质体醌和维生素E生物合成途径的一部分。这种酶也是各种新型漂白除草剂的分子靶标,目前正在开发针对这些除草剂的转基因耐受作物。我们已在烟草和大豆的质体转化体中表达了来自荧光假单胞菌的敏感细菌hppd基因,并对重组株系进行了详细表征。在这两个物种的转基因叶绿体中,HPPD积累至总可溶性蛋白的约5%。结果,大豆和烟草质体转化体获得了很强的除草剂耐受性,表现优于核转化体。相比之下,HPPD的过表达对叶片或种子中维生素E的含量在数量或质量上均无显著影响。本文提出并在烟草中举例说明了一种新策略,该策略能够快速产生仅含有除草剂耐受基因的无抗生素标记质体转化体。这项工作首次报道了主要农艺作物中用于除草剂耐受性的质体基因组工程,以及实现该性状无标记株系的技术。

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