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表达真菌铜转运蛋白基因的转基因烟草植物表现出增强的铜获取能力。

Transgenic Nicotiana tabacum plants expressing a fungal copper transporter gene show enhanced acquisition of copper.

机构信息

Nuclear Agriculture and Biotechnology Division, Bhabha Atomic Research Centre, Mumbai, 400085, India.

出版信息

Plant Cell Rep. 2011 Oct;30(10):1929-38. doi: 10.1007/s00299-011-1101-3. Epub 2011 Jun 14.

Abstract

The diets of two-thirds of the world's population are deficient in one or more essential elements and one of the approaches to enhance the levels of mineral elements in food crops is by developing plants with ability to accumulate them in edible parts. Besides conventional methods, transgenic technology can be used for enhancing metal acquisition in plants. Copper is an essential element, which is often deficient in human diet. With the objective of developing plants with improved copper acquisition, a high-affinity copper transporter gene (tcu-1) was cloned from fungus Neurospora crassa and introduced into a model plant (Nicotiana tabacum). Integration of the transgene was confirmed by Southern blot hybridization. Transgenic tobacco plants (T(0) and T(1)) expressing tcu-1, when grown in hydroponic medium spiked with different concentrations of copper, showed higher acquisition of copper (up to 3.1 times) compared with control plants. Transgenic plants grown in soil spiked with copper could also take up more copper compared with wild-type plants. Supplementation of other divalent cations such as Cd(2+) and Zn(2+) did not alter uptake of Cu by transgenic plants. The present study has shown that expression of a heterologous copper transporter in tobacco could enhance acquisition of copper.

摘要

世界上三分之二的人口的饮食中缺乏一种或多种必需元素,提高粮食作物中矿物质元素水平的方法之一是培育能够在可食用部分积累这些元素的植物。除了传统方法外,转基因技术也可用于提高植物对金属的吸收能力。铜是一种必需元素,在人类饮食中往往缺乏。为了开发具有改善铜吸收能力的植物,从真菌 Neurospora crassa 中克隆了一个高亲和力铜转运蛋白基因(tcu-1),并将其导入模式植物(烟草)。通过 Southern blot 杂交证实了转基因的整合。在含有不同浓度铜的水培培养基中生长的表达 tcu-1 的转基因烟草(T(0)和 T(1))与对照植物相比,铜的摄取量更高(高达 3.1 倍)。在添加铜的土壤中生长的转基因植物与野生型植物相比,也能吸收更多的铜。补充其他二价阳离子,如 Cd(2+)和 Zn(2+),不会改变转基因植物对 Cu 的吸收。本研究表明,在烟草中表达异源铜转运蛋白可以增强铜的摄取。

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