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An improved Agrobacterium mediated transformation system in wheat

机译:改良的农杆菌介导的小麦转化体系

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Wheat is the world's largest volume crop traded internationally. Foliar diseases are the main biotic restriction reducing yield in wheat crops. Wheat productivity can be enhanced through controlling foliar disease through the use of resistant cultivars. Plant breeders are providing considerable attention to wheat genetic improvement from the past few years to minimize losses due to pests and pathogens and also to improve the grain yield. Genetic transformation is fundamental to wheat molecular genetics and improvement through genetic engineering. There has been significant progress in Agrobacterium transformation of wheat but it is still confined mainly to a few responsive varieties due to poor understanding of the mechanism and availability of efficient techniques. This system is influenced by a number of factors including acetosyringone concentration. In present study, the pattern of interaction in between acetosyringone concentration and transformation potential was exploited for the efficient development of Agrobacterium mediated transformation system in local cultivars of wheat (Inqilab-91 and Chakwal-97). Mature embryos were used as explant sources for callus induction, which were used later in transformation experiments. Different concentrations of acetosyringone were used and it was observed in the study that transformation efficiency increases with increase in acetosyringone concentration upto 400 μM but further increase beyond this drastically reduced the transformation frequency. Maximum transformation efficiencies of 56.0 and 52.0% were obtained with 400μM of acetosyringone from Inqilab-91 and Chakwal-97 respectively.
机译:小麦是全球贸易量最大的作物。叶病是限制小麦作物单产的主要生物限制因素。通过使用抗性品种控制叶面疾病,可以提高小麦的生产力。过去几年中,植物育种者对小麦的遗传改良给予了极大的关注,以最大程度地减少由于病虫害和病原体造成的损失,并提高谷物的产量。遗传转化是小麦分子遗传学和通过基因工程进行改良的基础。小麦农杆菌转化取得了重大进展,但由于对机理和有效技术的了解不足,它仍主要限于少数响应品种。该系统受许多因素影响,包括乙酰丁香酮浓度。在本研究中,利用乙酰丁香酮浓度与转化潜力之间的相互作用模式来开发农杆菌介导的转化系统,以促进小麦本地品种(Inqilab-91和Chakwal-97)的发展。成熟的胚用作愈伤组织诱导的外植体来源,随后用于转化实验。使用了不同浓度的乙酰丁香酮,并且在研究中观察到,转化效率随着乙酰丁香酮浓度的增加而增加,最高可达400μM,但进一步增加则大大降低了转化频率。 400μM的乙酰丁香酮分别来自Inqilab-91和Chakwal-97,最大转化效率为56.0%和52.0%。

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