Ahmad Niaz, Mukhtar Zahid
Agricultural Biotechnology Division, National Institute for Biotechnology and Genetic Engineering (NIBGE), Jhang Road, Faisalabad, Pakistan.
Agricultural Biotechnology Division, National Institute for Biotechnology and Genetic Engineering (NIBGE), Jhang Road, Faisalabad, Pakistan.
Genomics. 2017 Oct;109(5-6):494-505. doi: 10.1016/j.ygeno.2017.07.007. Epub 2017 Aug 1.
An alarming increase in the human population necessitates doubling the world food production in the next few decades. Although a number of possible biotechnological measures are under consideration, central to these efforts is the development of transgenic crops to produce more food, and the traits with which plants could better adapt to adverse environmental conditions in a changing climate. The emergence of new tools for the introduction of foreign genes into plants has increased both our knowledge and the capacity to develop transgenic plants. In addition, a better understanding of genetic modifications has allowed us to study the impact that genetically modified crop plants may have on the environment. This article discusses different techniques routinely used to carry out genetic modifications in plants while highlighting challenges with them, which future research must address to increase acceptance of GM crops for meeting food security challenges effectively.
人口的惊人增长使得在未来几十年内将世界粮食产量翻番成为必要。尽管正在考虑一些可能的生物技术措施,但这些努力的核心是开发转基因作物以生产更多粮食,以及使植物能够在气候变化中更好地适应不利环境条件的性状。将外源基因导入植物的新工具的出现增加了我们对转基因植物的了解和开发能力。此外,对基因改造的更好理解使我们能够研究转基因作物可能对环境产生的影响。本文讨论了在植物中进行基因改造时常规使用的不同技术,同时强调了这些技术面临的挑战,未来的研究必须应对这些挑战,以提高转基因作物的接受度,从而有效应对粮食安全挑战。