Transgenic Plants: Gene Constructs, Vector and Transformation Method

Lee-Yoon Low, Shun-Kai Yang, D. Kok, Janna Ong-Abdullah, N. Tan, K. Lai
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引用次数: 33

Abstract

The human population has reached 7 billion by 2015 and is estimated to exceed 10 billion by the end of 2050. As such, crops which are the main food source must be produced at a higher pace in order to cater in tandem with the food demand. In the past, traditional plant breeders practice classical breeding techniques to propagate plants with desirable traits. However, traditional breeding technique lies in that only individuals of the same or closely related species can be crossbred. Moreover, traditional breeders will not be able to obtain traits which are not inherent within the gene pool of their target plants through classical breeding. With recent advancements in the field of genetic engineering, it is now possible to insert beneficial genes from a completely different species or even kingdom into a target plant, yielding transgenic plants with multiple ideal traits. To develop a transgenic plant, parameters such as vec- tor constructions, transformation methods, transgene integration, and inheritance of transgene need to be carefully considered to ensure the success of the transformation event. Hence, this chapter aimed to provide an overview of transgenic plants’ development, its advantages and disadvantages, as well as its application for the betterment of mankind .
转基因植物:基因构建、载体及转化方法
到2015年,世界人口已达到70亿,预计到2050年底将超过100亿。因此,作为主要粮食来源的作物必须以更高的速度生产,以满足粮食需求。过去,传统的植物育种家采用经典育种技术来繁殖具有理想性状的植物。然而,传统的育种技术是只有相同或近亲物种的个体才能杂交。此外,传统育种者将无法通过传统育种获得目标植物基因库中不固有的性状。随着基因工程领域的最新进展,现在可以将来自完全不同物种甚至王国的有益基因插入目标植物中,从而产生具有多种理想性状的转基因植物。在构建转基因植物时,需要考虑载体构建、转化方法、转基因整合、转基因遗传等参数,以确保转化事件的成功。因此,本章旨在概述转基因植物的发展,其优点和缺点,以及其在改善人类方面的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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