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首页> 外文期刊>Biotechnology Letters >Rhizobium radiobacter conjugation and callus-independent shoot regeneration used to introduce the cercosporin export gene cfp from Cercospora into sugar beet (Beta vulgaris L.)
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Rhizobium radiobacter conjugation and callus-independent shoot regeneration used to introduce the cercosporin export gene cfp from Cercospora into sugar beet (Beta vulgaris L.)

机译:根瘤菌放射细菌的结合和不依赖于愈伤组织的芽再生,用于将头孢菌素输出基因cfp从头孢菌素导入甜菜(Beta vulgaris L.)

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摘要

Leaf spot disease caused by Cercospora is responsible for crop and profitability losses in sugar beet crops in the US and worldwide. The cfp gene that encodes a protein that exports phytotoxic cercosporins from Cercospora was conjugally transferred to sugar beet using Rhizobium radiobacter (Agrobacterium tumefaciens), to improve Cercospora-induced leafspot resistance. Conditions for shoot regeneration were optimized to increase regeneration/transformation efficiencies. Low-light and room-temperature conditions were favorable to sugar beet regeneration without callus when cytokinin had been added to the tissue culture medium. Using this procedure adventitious shoots from leaf pieces were obtained in a simple, one-step regeneration procedure. T7, a cfp-transgenic clone verified by PCR with gene-specific primers, is being propagated for leaf spot disease resistance evaluation.
机译:Cercospora引起的叶斑病是造成美国和全球甜菜作物收成和利润损失的原因。使用放射根瘤菌(根癌农杆菌)将编码从Cercospora输出植物毒性头孢菌素的蛋白质的cfp基因共轭转移到甜菜中,以改善Cercospora诱导的叶斑病抗性。优化芽再生的条件以增加再生/转化效率。当将细胞分裂素加入组织培养基中时,弱光和室温条件有利于甜菜的再生而无愈伤组织。使用此程序,可以通过简单的一步式再生程序从叶片中获得不定芽。 T7是通过基因特异性引物通过PCR验证的cfp转基因克隆,目前正在传播以进行叶斑病抗性评估。

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