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首页> 外文期刊>Journal of genetics and genomics >Genetic Transformation of Aloe barbadensis Miller by Agrobacterium tumefaciens
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Genetic Transformation of Aloe barbadensis Miller by Agrobacterium tumefaciens

机译:根癌农杆菌对巴巴芦荟米勒的遗传转化

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Despite the importance of aloe in cosmetic and pharmaceutical industries, improvement of aloe (Aloe barbadensis Miller) by genetic engineering was seldom reported previously. In this study, regeneration and transformation conditions, including explant selection and surface sterilization, use of different Agrobacterium strains, and co-culture processing, are optimized. The use of 20.0% sodium hypochloride (25 min) for sterilization was less detrimental to the health of explant than 0.1% mercuric chloride (10 min). Regeneration frequency from stems was much higher than that from leaves or sheaths. Explants were infected by Agrobacterium (30 min) in liquid co-cultural medium, and this was followed by three days co-culture on sterile filter papers with light for 10 h per day at 24 degrees C. Histochemical data demonstrated that the transient expression of GUS gene in the stem explants of aloe infected with Agrobacterium strains EHA105 and C58C1 was 80.0% and 30.0%, respectively, suggesting the higher sensitivity of the explants to EHA105 than to C58C1. Infected tissues were selected using G418 (10.0-25.0 mg/L) to generate transformants. Sixty-seven G418 resistant plantlets were generated from the infected explants. Southern blotting, PCR, and ELISA analyses indicated that the alien gene were successfully transferred into aloe and was expressed in the transgenic plants. This newly established transformation system could be used for the genetic improvement of aloe.
机译:尽管芦荟在化妆品和制药工业中很重要,但以前很少有报道通过基因工程改良芦荟。在这项研究中,优化了再生和转化条件,包括外植体选择和表面灭菌,使用不同农杆菌菌株以及共培养过程。与0.1%的氯化汞(10分钟)相比,使用20.0%的次氯酸钠(25分钟)灭菌对外植体健康的危害较小。茎的再生频率比叶或鞘的再生频率高得多。外植体在土壤共培养液中被土壤杆菌感染(30分钟),然后在无菌滤纸上于24℃每天光照10 h共培养3天。组织化学数据表明,瞬时表达用农杆菌菌株EHA105和C58C1感染的芦荟干外植体中的GUS基因分别为80.0%和30.0%,表明外植体对EHA105的敏感性高于对C58C1的敏感性。使用G418(10.0-25.0 mg / L)选择感染的组织以产生转化体。从被感染的外植体中产生了67株G418抗性苗。 Southern印迹,PCR和ELISA分析表明外源基因已成功转移到芦荟中并在转基因植物中表达。该新建立的转化系统可用于芦荟的遗传改良。

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