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柠檬罗勒α-姜烯合成酶基因的过表达增加了番茄果实中单萜和倍半萜的含量。

Overexpression of the lemon basil alpha-zingiberene synthase gene increases both mono- and sesquiterpene contents in tomato fruit.

作者信息

Davidovich-Rikanati Rachel, Lewinsohn Efraim, Bar Einat, Iijima Yoko, Pichersky Eran, Sitrit Yaron

机构信息

Department of Vegetable Crops, Newe Ya'ar Research Center, Agricultural Research Organization, P.O. Box 1021, Ramat Yishay 30095, IsraelDepartment of Life Sciences, Ben-Gurion University of the Negev, P.O. Box 653, Beer-Sheva 84105, IsraelDepartment of Molecular, Cellular and Developmental Biology, University of Michigan, Ann Arbor, MI, USAPresent address: Department of Biotechnology Research, Kazusa DNA Research Institute, 2-5-23 Kazusa-Kamatari, Kisarazu, Chiba 292-0818, JapanThe Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, P.O. Box 653, Beer-Sheva 84105, Israel.

出版信息

Plant J. 2008 Oct;56(2):228-238. doi: 10.1111/j.1365-313X.2008.03599.x. Epub 2008 Jul 4.

Abstract

alpha-Zingiberene synthase (ZIS), a sesquiterpene synthase gene that was isolated from lemon basil (Ocimum basilicum L.), encodes an enzyme that catalyzes the formation of alpha-zingiberene, and other sesquiterpenes, from farnesyl diphosphate. Transgenic tomato fruits overexpressing ZIS under the control of the fruit ripening-specific tomato polygalacturonase promoter (PG) accumulated high levels of alpha-zingiberene (224-1000 ng g(-1) fresh weight) and other sesquiterpenes, such as alpha-bergamotene, 7-epi-sesquithujene, beta-bisabolene and beta-curcumene, whereas no sesquiterpenes were detected in non-transformed control fruits. The ZIS-transgenic fruits also produced monoterpenes, such as alpha-thujene, alpha-pinene, beta-phellandrene and gamma-terpinene (1-22 ng g(-1) fresh weight), which were either not detected or were found only in minute concentrations in control fruits. Recombinant ZIS overexpressed in Escherichia coli catalyzed the formation of these monoterpenes from geranyl diphosphate. As the ZIS protein apparently lacks a transit peptide, and is localized in the cytosol, the production of monoterpenes in the transgenic tomatoes suggests that a pool of geranyl diphosphate is available in the cytosol. The phenotype of the ZIS-transgenic tomatoes was the same as that for wild-type tomatoes, with regard to plant vigor and shape, but transgenic plants exhibited a small decrease in lycopene content. This study thus showed that the synthesis of both mono- and sesquiterpenes can be enhanced by the ectopic expression of a single transgene in tomato fruit, and it further demonstrated the interconnection between the pools of terpenoid precursors in the plastids and the cytosol.

摘要

α-姜烯合酶(ZIS)是一种从柠檬罗勒(Ocimum basilicum L.)中分离得到的倍半萜合酶基因,它编码一种酶,该酶可催化法呢基二磷酸形成α-姜烯和其他倍半萜。在果实成熟特异性的番茄多聚半乳糖醛酸酶启动子(PG)控制下过表达ZIS的转基因番茄果实积累了高水平的α-姜烯(224 - 1000 ng g(-1)鲜重)和其他倍半萜,如α-佛手柑烯、7-表-倍半萜烯、β-红没药烯和β-姜黄烯,而在未转化的对照果实中未检测到倍半萜。ZIS转基因果实还产生了单萜,如α-侧柏烯、α-蒎烯、β-水芹烯和γ-萜品烯(1 - 22 ng g(-1)鲜重),这些单萜在对照果实中要么未被检测到,要么仅以微量存在。在大肠杆菌中过表达的重组ZIS催化香叶基二磷酸形成这些单萜。由于ZIS蛋白显然缺乏转运肽且定位于细胞质中,转基因番茄中单萜的产生表明细胞质中存在香叶基二磷酸池。就植株活力和形状而言,ZIS转基因番茄的表型与野生型番茄相同,但转基因植株的番茄红素含量略有下降。因此,本研究表明,通过在番茄果实中异位表达单个转基因可以增强单萜和倍半萜的合成,并且进一步证明了质体和细胞质中萜类前体池之间的相互联系。

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