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Enhancing Agrobacterium tumefaciens-mediated transformation efficiency of perennial ryegrass and rice using heat and high maltose treatments during bacterial infection

机译:在细菌感染期间通过加热和高麦芽糖处理提高根癌农杆菌介导的多年生黑麦草和水稻的转化效率

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Perennial ryegrass is one of the most widely cultivated grasses in temperate regions. However, it is recalcitrant for in vitro manipulation. In this study, various parameters affecting Agrobacterium tumefaciens-mediated infection were tested to optimize transformation efficiency in perennial ryegrass. The effects of heat shock and maltose concentration during Agrobacterium infection were evaluated along with variations in callus induction medium, bacterial infection media and callus age. Our results suggest that Agrobacterium infection at 42 °C for 3 min and co-cultivation of Agrobacterium-infected callus on a high maltose medium (6 %) significantly enhances the transformation efficiency in perennial ryegrass. The most optimal conditions proved to be use of four-month-old embryogenic callus induced on a modified N6 medium, infected with Agrobacterium grown on a modified Murashige and Skoog (MSM) medium, and a 42 °C heat shock treatment followed by the co-cultivation of the Agrobacterium and the callus on medium containing 6 % maltose (instead of 3 %). Using this optimized protocol, we were able to increase the transformation efficiencies for regenerated plants from approximately 1 % to over 20 %. Significant improvement in rice stable transformation efficiency was also observed when the optimized conditions were applied to this important cereal, indicating the method described here may apply to other monocots as well.
机译:多年生黑麦草是温带地区种植最广泛的草之一。但是,它对于体外操作是有害的。在这项研究中,测试了影响根癌农杆菌介导的感染的各种参数,以优化多年生黑麦草的转化效率。评估了土壤杆菌感染过程中热休克和麦芽糖浓度的影响,以及愈伤组织诱导培养基,细菌感染培养基和愈伤组织年龄的变化。我们的结果表明,农杆菌在42°C感染3分钟,并在高麦芽糖培养基(6%)上共同培养农杆菌感染的愈伤组织,可显着提高多年生黑麦草的转化效率。事实证明,最理想的条件是使用在改良的N6培养基上诱导的四个月大的胚性愈伤组织,并感染在改良的Murashige and Skoog(MSM)培养基上生长的农杆菌,并在42°C进行热休克处理,随后进行-在含有6%麦芽糖(而不是3%)的培养基上培养农杆菌和愈伤组织。使用此优化的协议,我们能够将再生植物的转化效率从大约1%提高到20%以上。当将优化条件应用于该重要谷物时,还观察到水稻稳定转化效率的显着提高,表明此处描述的方法也可能适用于其他单子叶植物。

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