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Plant artificial chromosome technology and its potential application in genetic engineering

机译:植物人工染色体技术及其在基因工程中的潜在应用

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Summary Genetic engineering with just a few genes has changed agriculture in the last 20?years. The most frequently used transgenes are the herbicide resistance genes for efficient weed control and the Bt toxin genes for insect resistance. The adoption of the first-generation genetically engineered crops has been very successful in improving farming practices, reducing the application of pesticides that are harmful to both human health and the environment, and producing more profit for farmers. However, there is more potential for genetic engineering to be realized by technical advances. The recent development of plant artificial chromosome technology provides a super vector platform, which allows the management of a large number of genes for the next generation of genetic engineering. With the development of other tools such as gene assembly, genome editing, gene targeting and chromosome delivery systems, it should become possible to engineer crops with multiple genes to produce more agricultural products with less input of natural resources to meet future demands.
机译:摘要遗传工程与少数几个基因发生在过去的20年里发生了农业。最常用的转基因是用于有效杂草控制和用于抗虫的BT毒素基因的除草剂抗性基因。通过第一代转基因作物的采用在改善农业实践方面取得了非常成功,减少了对人类健康和环境有害的农药的应用,并为农民产生更多利润。然而,通过技术进步实现基因工程的潜力更有潜力。近期植物人工染色体技术的发展提供了超级载体平台,这允许管理下一代基因工程的大量基因。随着其他工具的发展,如基因组装,基因组编辑,基因靶向和染色体递送系统,它应该有可能与多个基因的工程杂粮生产更多的农产品,以较少输入自然资源以满足未来的需求。

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