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An Improved Syringe Agroinfiltration Protocol to Enhance Transformation Efficiency by Combinative Use of 5-Azacytidine Ascorbate Acid and Tween-20

机译:通过结合使用5-氮杂胞苷抗坏血酸和Tween-20来提高转化效率的改进的注射器农杆菌浸润方案

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摘要

Syringe infiltration is an important transient transformation method that is widely used in many molecular studies. Owing to the wide use of syringe agroinfiltration, it is important and necessary to improve its transformation efficiency. Here, we studied the factors influencing the transformation efficiency of syringe agroinfiltration. The pCAMBIA1301 was transformed into Nicotiana benthamiana leaves for investigation. The effects of 5-azacytidine (AzaC), Ascorbate acid (ASC) and Tween-20 on transformation were studied. The β-glucuronidase (GUS) expression and GUS activity were respectively measured to determine the transformation efficiency. AzaC, ASC and Tween-20 all significantly affected the transformation efficiency of agroinfiltration, and the optimal concentrations of AzaC, ASC and Tween-20 for the transgene expression were identified. Our results showed that 20 μM AzaC, 0.56 mM ASC and 0.03% (v/v) Tween-20 is the optimal concentration that could significantly improve the transformation efficiency of agroinfiltration. Furthermore, a combined supplement of 20 μM AzaC, 0.56 mM ASC and 0.03% Tween-20 improves the expression of transgene better than any one factor alone, increasing the transgene expression by more than 6-fold. Thus, an optimized syringe agroinfiltration was developed here, which might be a powerful method in transient transformation analysis.
机译:注射器渗透是一种重要的瞬时转化方法,已广泛用于许多分子研究中。由于注射器农业渗透的广泛应用,提高其转化效率是重要且必要的。在这里,我们研究了影响注射器农杆菌浸润转化效率的因素。将pCAMBIA1301转化为本氏烟草叶片进行研究。研究了5-氮杂胞苷(AzaC),抗坏血酸(ASC)和Tween-20对转化的影响。分别测量β-葡萄糖醛酸苷酶(GUS)的表达和GUS活性,以确定转化效率。 AzaC,ASC和Tween-20均显着影响农杆菌浸润的转化效率,并确定了转基因表达的最佳AzaC,ASC和Tween-20浓度。我们的结果表明,最佳浓度为20μMAzaC,0.56 mM ASC和0.03%(v / v)Tween-20,可显着提高农用浸润的转化效率。此外,20μMAzaC,0.56 mM ASC和0.03%Tween-20的组合补充剂比单独的任何一种因子都能更好地改善转基因表达,使转基因表达提高6倍以上。因此,这里开发了一种优化的注射器农用渗入法,这可能是瞬时转化分析中的一种有力方法。

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