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Soybean genetic transformation: A valuable tool for the functional study of genes and the production of agronomically improved plants

机译:大豆遗传转化:基因功能研究和农艺改良植物生产的宝贵工具

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摘要

Transgenic plants represent an invaluable tool for molecular, genetic, biochemical and physiological studies by gene overexpression or silencing, transposon-based mutagenesis, protein sub-cellular localization and/or promoter characterization as well as a breakthrough for breeding programs, allowing the production of novel and genetically diverse genotypes. However, the stable transformation of soybean cannot yet be considered to be routine because it depends on the ability to combine efficient transformation and regeneration techniques. Two methods have been used with relative success to produce completely and stably transformed plants: particle bombardment and the Agrobacterium tumefaciens system. In addition, transformation by Agrobacterium rhizogenes has been used as a powerful tool for functional studies. Most available information on gene function is based on heterologous expression systems. However, as the activity of many promoters or proteins frequently depends on specific interactions that only occur in homologous backgrounds, a final confirmation based on a homologous expression system is desirable. With respect to soybean biotech improvement, transgenic lines with agronomical, nutritional and pharmaceutical traits have been obtained, including herbicide-tolerant soybeans, which represented the principal biotech crop in 2011, occupying 47% of the global biotech area.
机译:转基因植物通过基因的过表达或沉默,基于转座子的诱变,蛋白质亚细胞定位和/或启动子表征以及在育种计划上的突破而成为分子,遗传,生化和生理研究的宝贵工具和遗传多样的基因型。但是,大豆的稳定转化尚不能视为常规操作,因为它取决于结合有效转化和再生技术的能力。已经使用相对成功的两种方法来生产完全且稳定地转化的植物:粒子轰击和根癌农杆菌系统。另外,发根农杆菌转化已经用作功能研究的有力工具。有关基因功能的大多数可用信息均基于异源表达系统。然而,由于许多启动子或蛋白质的活性通常取决于仅在同源背景中发生的特定相互作用,因此基于同源表达系统的最终确认是合乎需要的。关于大豆生物技术的改良,已获得具有农艺,营养和药物特性的转基因品系,包括耐除草剂的大豆,该植物是2011年主要的生物技术作物,占全球生物技术领域的47%。

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