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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >A reliable and high-efficiency Agrobacterium tumefaciens-mediated transformation system of Pogonatherum paniceum embryogenic callus using GFP as a reporter gene
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A reliable and high-efficiency Agrobacterium tumefaciens-mediated transformation system of Pogonatherum paniceum embryogenic callus using GFP as a reporter gene

机译:以GFP为报告基因的可靠高效农杆菌介导的gon丝胚发生愈伤组织转化系统

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Pogonatherum paniceum (Lam.) Hack, a perennial turfgrass, is important in ecological restoration and landscape construction because of its strong root system and attractive appearance. In this paper, we report the establishment of Agrobacterium tumefaciens-mediated transformation of P. paniceum embryogenic callus (EC) using a high-frequency regeneration system. We also optimised the transformation conditions, such as sub-culture and pre-culture of EC, Agrobacterium concentration, infection time, acetosyringone (AS) concentration, co-cultivation duration, bacteriostatic antibiotics, spectinomycin concentration, washing solutions and selection schemes, based on the transformation efficiency evaluated by green fluorescent protein (GFP) visual analysis, callus survival rate and differentiation rate. The optimal solution was prepared under the following conditions: EC was sub-cultured three times and pre-cultured for 4 days prior to transformation, Agrobacterium concentration of OD600 = 0.6, infection time of 10 min, AS concentration of 40 mg/L, co-cultivation duration of 3 days, washing with liquid washing medium plus 250 mg/L cefotaxime, selection with 300 mg/L cefotaxime and 150 mg/L spectinomycin for 2 or 4 weeks of callus selection, 4 or 2 weeks of differentiation selection and 2 weeks of rooting selection. In the optimised transformation system, the transformation efficiency reached nearly 70 %. PCR and liquid Southern hybridization demonstrated the stable integration of the gfp gene into the P. paniceum genome, GFP visual analysis and RT-PCR confirmed gfp gene expression. This reliable and high-efficiency A. tumefaciens-mediated transformation system lays the foundation for genetic improvement and functional gene research of P. paniceum and improves the application of P. paniceum in ecological restoration and landscape construction.
机译:多年生的草皮(Pogonatherum paniceum,Lam。Hack)因其强大的根系和诱人的外观在生态修复和景观建设中很重要。在本文中,我们报告了使用高频再生系统建立根癌农杆菌介导的P. paniceum胚发生愈伤组织(EC)的转化。我们还优化了转化条件,例如基于EC的继代培养和预培养,农杆菌浓度,感染时间,乙酰丁香酮(AS)浓度,共培养持续时间,抑菌抗生素,壮观霉素浓度,洗涤液和选择方案。通过绿色荧光蛋白(GFP)的目测分析,愈伤组织存活率和分化率评估转化效率。在以下条件下制备最佳溶液:转化前将EC传代培养3次并预培养4天,农杆菌浓度OD600 = 0.6,感染时间为10分钟,AS浓度为40 mg / L, -培养时间为3天,用液体洗涤介质加250 mg / L头孢噻肟洗涤,用300 mg / L头孢噻肟和150 mg / L大观霉素进行选择,进行2或4周的愈伤组织选择,4或2周的分化选择和2选择生根的周数。在优化的转化系统中,转化效率达到近70%。 PCR和液体Southern杂交证明gfp基因已稳定整合到P. paniceum基因组中,GFP目测分析和RT-PCR证实了gfp基因表达。这种可靠,高效的根癌农杆菌介导的转化系统为桑pan的遗传改良和功能基因研究奠定了基础,并提高了桑pan在生态修复和景观建设中的应用。

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