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根癌农杆菌介导的禾本科作物遗传转化研究进展

Advances in Agrobacterium tumefaciens-mediated genetic transformation of graminaceous crops.

作者信息

Singh Roshan Kumar, Prasad Manoj

机构信息

National Institute of Plant Genome Research (NIPGR), Aruna Asaf Ali Marg, JNU Campus, New Delhi, 110 067, India.

出版信息

Protoplasma. 2016 May;253(3):691-707. doi: 10.1007/s00709-015-0905-3. Epub 2015 Dec 10.

Abstract

Steady increase in global population poses several challenges to plant science research, including demand for increased crop productivity, grain yield, nutritional quality and improved tolerance to different environmental factors. Transgene-based approaches are promising to address these challenges by transferring potential candidate genes to host organisms through different strategies. Agrobacterium-mediated gene transfer is one such strategy which is well known for enabling efficient gene transfer in both monocot and dicots. Due to its versatility, this technique underwent several advancements including development of improved in vitro plant regeneration system, co-cultivation and selection methods, and use of hyper-virulent strains of Agrobacterium tumefaciens harbouring super-binary vectors. The efficiency of this method has also been enhanced by the use of acetosyringone to induce the activity of vir genes, silver nitrate to reduce the Agrobacterium-induced necrosis and cysteine to avoid callus browning during co-cultivation. In the last two decades, extensive efforts have been invested towards achieving efficient Agrobacterium-mediated transformation in cereals. Though high-efficiency transformation systems have been developed for rice and maize, comparatively lesser progress has been reported in other graminaceous crops. In this context, the present review discusses the progress made in Agrobacterium-mediated transformation system in rice, maize, wheat, barley, sorghum, sugarcane, Brachypodium, millets, bioenergy and forage and turf grasses. In addition, it also provides an overview of the genes that have been recently transferred to these graminaceous crops using Agrobacterium, bottlenecks in this technique and future possibilities for crop improvement.

摘要

全球人口的稳步增长给植物科学研究带来了诸多挑战,包括对提高作物生产力、谷物产量、营养品质以及增强对不同环境因素耐受性的需求。基于转基因的方法有望通过不同策略将潜在的候选基因转移到宿主生物体中来应对这些挑战。农杆菌介导的基因转移就是这样一种策略,它以能够在单子叶植物和双子叶植物中实现高效基因转移而闻名。由于其通用性,这项技术经历了多项改进,包括开发改进的体外植物再生系统、共培养和选择方法,以及使用携带超级双元载体的根癌农杆菌的超毒力菌株。通过使用乙酰丁香酮诱导vir基因的活性、硝酸银减少农杆菌诱导的坏死以及半胱氨酸避免共培养过程中愈伤组织褐化,该方法的效率也得到了提高。在过去的二十年里,人们为在谷物中实现高效的农杆菌介导转化付出了巨大努力。尽管已经为水稻和玉米开发了高效转化系统,但在其他禾本科作物中报道的进展相对较少。在此背景下,本综述讨论了水稻、玉米、小麦、大麦、高粱、甘蔗、短柄草、粟、生物能源以及饲料和草坪草在农杆菌介导转化系统方面取得的进展。此外,它还概述了最近利用农杆菌转移到这些禾本科作物中的基因、该技术的瓶颈以及作物改良的未来可能性。

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