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异位表达苹果果实 homogentisate 植基转移酶基因(MdHPT1)增加了转基因番茄(Solanum lycopersicum cv. Micro-Tom)叶片和果实中的生育酚。

Ectopic expression of apple fruit homogentisate phytyltransferase gene (MdHPT1) increases tocopherol in transgenic tomato (Solanum lycopersicum cv. Micro-Tom) leaves and fruits.

机构信息

Department of Biology, College of Life Science and Biotechnology, Yonsei University, Seoul 120-749, Republic of Korea.

出版信息

Phytochemistry. 2011 Apr;72(4-5):321-9. doi: 10.1016/j.phytochem.2010.12.013. Epub 2011 Jan 20.

Abstract

Homogentisate phytyltransferase (HPT) is an important enzyme in the biosynthesis of tocopherols (vitamin E). Herein, an HPT homolog (MdHPT1) was isolated from apple (Malus domestica Borkh. cv. Fuji) fruits, whose gene expression level gradually decreased during fruit ripening, reaching a background level in ripened apple fruits. The amounts of α- and γ-tocopherols, two major tocopherols in plant organs, were 5- to 14-fold lower in the fruits than in the leaves and flowers of apple plants. Transgenic tomato plants (Solanum lycopersicum cv. Micro-Tom) overexpressing MdHPT1 were next constructed. Transgenic independent T(1) leaves contained ∼1.8- to 3.6-fold and ∼1.6- to 2.9-fold higher levels of α-tocopherol and γ-tocopherol, respectively, than those in control plants. In addition, the levels of α-tocopherol and γ-tocopherol in 35S:MdHPT1 T(1) fruits increased up to 1.7-fold and 3.1-fold, respectively, as compared to the control fruits, indicating that an increase in α-tocopherol in fruits (maximal 1.7-fold) was less evident than that in leaves (maximal 3.6-fold). This finding suggests that the apple MdHPT1 plays a role in tocopherol production in transgenic tomatoes.

摘要

视黄醇植基转移酶(HPT)是生育酚(维生素 E)生物合成中的一种重要酶。本文从苹果(Malus domestica Borkh. cv. Fuji)果实中分离出一个 HPT 同源物(MdHPT1),其基因表达水平在果实成熟过程中逐渐降低,在成熟的苹果果实中达到背景水平。α-生育酚和γ-生育酚是植物器官中两种主要的生育酚,其在果实中的含量比苹果植株的叶片和花朵低 5-14 倍。接着构建了过量表达 MdHPT1 的转基因番茄植株(Solanum lycopersicum cv. Micro-Tom)。独立的 T(1)转基因叶片中α-生育酚和γ-生育酚的含量分别比对照植株高 1.8-3.6 倍和 1.6-2.9 倍。此外,与对照果实相比,35S:MdHPT1 T(1)果实中的α-生育酚和γ-生育酚水平分别增加了 1.7 倍和 3.1 倍,表明果实中α-生育酚的增加(最大 1.7 倍)不如叶片中明显(最大 3.6 倍)。这一发现表明,苹果 MdHPT1 在转基因番茄中的生育酚合成中起作用。

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