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利用杂合状态下的超基因构型,最大限度地将转基因性状表达到优良苜蓿种质中。

Maximizing the expression of transgenic traits into elite alfalfa germplasm using a supertransgene configuration in heterozygous conditions.

机构信息

Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina.

Instituto de Genética "Ewald Favret" (INTA), Buenos Aires, Argentina.

出版信息

Theor Appl Genet. 2018 May;131(5):1111-1123. doi: 10.1007/s00122-018-3062-1. Epub 2018 Feb 3.

Abstract

A novel process for the production of transgenic alfalfa varieties. Numerous species of legumes, including alfalfa, are critical factors for agroecosystems due to their ability to grow without nitrogen fertilizers derived from non-renewable fossil fuels, their contribution of organic nitrogen to the soil, and their increased nutritional value. Alfalfa is the main source of vegetable proteins in meat and milk production systems worldwide. Despite the economic and ecological importance of this autotetraploid and allogamous forage crop, little progress has been made in the incorporation of transgenic traits into commercial alfalfa. This is mainly due to the unusually strong transgene silencing and complex reproductive behavior of alfalfa, which limit the production of events with high transgene expression and the introgression of selected events within heterogeneous synthetic populations, respectively. In this report, we describe a novel procedure, called supertransgene process, where a glufosinate-tolerant alfalfa variety was developed using a single event containing the BAR transgene associated with an inversion. This approach can be used to maximize the expression of transgenic traits into elite alfalfa germplasm and to reduce the cost of production of transgenic alfalfa cultivars, contributing to the public improvement of this legume forage and other polyploid and outcrossing crop species.

摘要

一种生产转基因苜蓿品种的新方法。许多豆科植物,包括苜蓿,由于它们能够在不使用来自不可再生化石燃料的氮肥的情况下生长,它们为土壤提供有机氮的贡献,以及它们增加的营养价值,是农业生态系统的关键因素。苜蓿是世界范围内肉类和奶制品生产系统中蔬菜蛋白的主要来源。尽管这种同源四倍体和异花授粉饲料作物具有经济和生态重要性,但在将转基因特性纳入商业苜蓿方面几乎没有取得进展。这主要是由于苜蓿异常强烈的转基因沉默和复杂的繁殖行为,分别限制了具有高转基因表达的事件的产生和选定事件在异质合成群体中的渗入。在本报告中,我们描述了一种称为超转基因过程的新方法,该方法使用含有与倒位相关的 BAR 转基因的单个事件开发了耐草甘膦的苜蓿品种。这种方法可用于将转基因特性最大限度地表达到优良苜蓿种质中,并降低转基因苜蓿品种的生产成本,为这种豆科饲料和其他多倍体和异花授粉作物的公共改良做出贡献。

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