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Optimization of the uidA Gene Transfer of Rosa hybrida via Agrobacterium tumefaciens: an Assessment of Factors Influencing the Efficiency of Gene Transfer 被引量:2

Optimization of the uidA Gene Transfer of Rosa hybrida via Agrobacterium tumefaciens: an Assessment of Factors Influencing the Efficiency of Gene Transfer
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摘要 To develop a transformation protocol of Rosa hybrida Samantha via Agrobacterium tumefaciens, the authors examined the effect of different factors on T-DNA transfer by measuring transient expression levels of an intron-containing -glucuronidase gene. The results indicate that explant, light condition, salt concentration and acetosyringone (AS) concentration in co-culture medium are the most important factors, and factors like co-culture temperature, co-culture period and bacteria density have a strong effect on the growth of bacteria and then T-DNA transfer. Optimized co-cultivation was performed by inoculation of embryogenic callus with bacteria at a density of OD600= 0.50.8 for 20 min and co-culture in darkness under 23 C on medium with 1/2 MS salts and 300 mol稬1 AS for 3 d. To develop a transformation protocol of Rosa hybrida Samantha via Agrobacterium tumefaciens, the authors examined the effect of different factors on T-DNA transfer by measuring transient expression levels of an intron-containing -glucuronidase gene. The results indicate that explant, light condition, salt concentration and acetosyringone (AS) concentration in co-culture medium are the most important factors, and factors like co-culture temperature, co-culture period and bacteria density have a strong effect on the growth of bacteria and then T-DNA transfer. Optimized co-cultivation was performed by inoculation of embryogenic callus with bacteria at a density of OD600= 0.50.8 for 20 min and co-culture in darkness under 23 C on medium with 1/2 MS salts and 300 mol稬1 AS for 3 d.
出处 《Forestry Studies in China》 CAS 2004年第3期9-14,共6页 中国林学(英文版)
基金 Supported by the National Natural Science Foundation of China (Grant No.30170666)
关键词 Agrobacterium tumefaciens Rosa hybrida uidA gene adventitious bud embryogenic callus transient expression Agrobacterium tumefaciens, Rosa hybrida, uidA gene, adventitious bud, embryogenic callus, transient expression
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