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Genetically modified crops: the fastest adopted crop technology in the history of modern agriculture

机译:转基因作物:现代农业历史上最快采用的作物技术

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The major scientific advances of the last century featured the identification of the structure of DNA, the development of molecular biology and the technology to exploit these advances. These breakthroughs gave us new tools for crop improvement, including molecular marker-aided selection (MAS) and genetic modification (GM). MAS improves the efficiency of breeding programs, and GM allows us to accomplish breeding objectives not possible through conventional breeding approaches. MAS is not controversial and is now routinely used in crop improvement programs. However, the international debate about the application of genetic manipulation to crop improvement has slowed the adoption of GM crops in developing as well as in European countries. Since GM crops were first introduced to global agriculture in 1996, Clive James has published annual reports on the global status of commercialized GM crops as well as special reports on individual GM crops for The International Service for the Acquisition of Agri-biotech Applications (ISAAA). His 34th report, Global Status of Commercialized Biotech/ GM crops: 2011 [1] is essential reading for those who are concerned about world food security.
机译:上世纪的主要科学进展包括DNA结构的鉴定,分子生物学的发展以及利用这些进展的技术。这些突破为我们提供了新的农作物改良工具,包括分子标记辅助选择(MAS)和基因修饰(GM)。 MAS提高了育种程序的效率,而GM使我们能够实现常规育种方法无法实现的育种目标。 MAS并没有争议,现在通常用于作物改良计划中。然而,关于将基因操作应用于作物改良的国际辩论减缓了转基因作物在发展中国家和欧洲国家的采用。自从转基因作物于1996年首次引入全球农业以来,克莱夫·詹姆斯(Clive James)就国际商业化获取农业生物技术应用服务(ISAAA)发布了关于商业化转基因作物的全球状况的年度报告以及有关个别转基因作物的特别报告。 。他的第34次报告“商业化生物技术/转基因作物的全球状况:2011 [1]”对于那些关心世界粮食安全的人们来说是必不可少的读物。

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