Genetic engineering of cotton: current status and perspectives

Q3 Agricultural and Biological Sciences
K. Smirnov, T. Matveeva, L. A. Lutova
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引用次数: 0

Abstract

Currently, several species of the genus Gossypium are cultivated in agriculture to produce fiber. Cotton has been cultivated for a long time, however, many aspects of its cultivation and processing are still researched. Writing about the cultivation of cotton, it is worth mentioning the fundamental problems of its processing. For example, the amounts of pesticides used in the cultivation of cotton are greater than for any other crop. Chemicals sprayed on cotton fields are washed away from the fields and, reaching the fresh water sources, pollute them, causing significant damage to the environment. Fortunately, such challenges can be solved by switching to the cultivation of transgenic cotton. Transgenic cotton has already brought many important environmental, social and economic benefits, including reduce of the used pesticides, indirectly increasing of yield, minimizing environmental pollution, reducing the labor force involved and economic costs.Today, the main methods of obtaining transgenic cotton lines are still agrobacterial transformation and biolistics. In recent years, however, innovative methods of transformation have also been developed. For example, the introduction of genetic material mediated by a pollen tube for the cultivation of commercial transgenic cotton is actively used in China. Although in recent decades transgenic lines resistant to diseases, abiotic stresses and with improved fiber quality have been obtained, the dominant position in the market of transgenic cotton is still occupied by lines of plants resistant to insects and herbicides. All the above indicates an insufficient degree of integration between institutes that introduce new advanced developments and agricultural industry.In this review the results of research involving the cultivation and genetic modification of cotton were collected and summarized. The main methods of genetic transformation of cultivated representatives of the genus Gossypium, both actively used at present and still under development, were considered. The most remarkable transgenic lines were also described, among which both those that have already entered agricultural industry and those that have only recently been obtained. Thus, the reader will be able to get a general idea of the current achievements in the field of cotton genetic modification.
棉花基因工程:现状与展望
目前,棉属的几个品种被用于农业生产纤维。棉花的种植历史悠久,但其栽培和加工的许多方面仍在研究中。写到棉花的种植,它的加工的基本问题是值得一提的。例如,种植棉花时使用的杀虫剂比种植任何其他作物都要多。喷洒在棉田上的化学药品被冲走,到达淡水水源,污染了淡水水源,对环境造成严重破坏。幸运的是,这些挑战可以通过转向转基因棉花的种植来解决。转基因棉花已经带来了许多重要的环境、社会和经济效益,包括减少农药的使用,间接提高产量,最大限度地减少环境污染,减少劳动力和经济成本。目前,获得转基因棉花品系的主要方法仍然是农杆菌转化和生物学。然而,近年来,创新的改造方法也被开发出来。例如,通过花粉管介导的遗传物质引入转基因棉花的培育在中国得到了积极的应用。虽然近几十年来已经获得了抗病、抗非生物胁迫、纤维品质提高的转基因棉花品系,但转基因棉花市场的主导地位仍然是抗虫、抗除草剂的品系。所有这些都表明,引进新的先进发展成果的研究所与农业产业之间的整合程度不够。本文对国内外有关棉花栽培和基因改造的研究成果进行了综述。综述了目前积极利用和开发中的棉属栽培代表植物遗传转化的主要方法。还介绍了最引人注目的转基因品系,其中既有已经进入农业生产的,也有最近才获得的。这样,读者就能对目前棉花转基因领域的成就有一个大致的了解。
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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来源期刊
Plant breeding and biotechnology
Plant breeding and biotechnology Agricultural and Biological Sciences-Plant Science
CiteScore
2.30
自引率
0.00%
发文量
18
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