利用同源侧翼序列载体提高马铃薯质体转化效率。

GM crops Pub Date : 2011-04-01 DOI:10.4161/gmcr.2.2.17504
Nunzia Scotti, Vladimir T Valkov, Teodoro Cardi
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引用次数: 22

摘要

低转化频率限制了质体转化在马铃薯和其他作物中的应用。因此,在重要农艺物种的叶绿体基因工程方面取得突破是一个非常理想的目标。我们利用改进的再生程序和含有马铃薯侧翼序列的新型载体,在质体体的大单拷贝区通过同源重组进行转基因整合,成功地实现了马铃薯每次轰击一次的转化效率。采用生物学方法进行媒介传递。与我们研究中使用的祖载体在马铃薯中获得的结果相比,这种效率相当于15-18倍的提高,与烟草通常取得的效果相当。研究结果表明,质体转化技术在马铃薯育种和生物技术中的应用取得了重大进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement of plastid transformation efficiency in potato by using vectors with homologous flanking sequences.

Low transformation frequencies limit the use of plastid transformation in potato and other crops. Hence, a breakthrough in chloroplast genetic engineering of agronomically important species is a highly desirable goal. We succeeded in achieving potato transformation efficiency up to one shoot every bombardment using a modified regeneration procedure and novel vectors containing potato flanking sequences for transgene integration by homologous recombination in the Large Single Copy region of the plastome. Vector delivery was performed by the biolistic approach. Such efficiency corresponds to 15-18-fold improvement compared to previous results obtained in potato with a progenitor vector of that used in our study, and is comparable to that usually achieved with tobacco. The results obtained represent a significant advancement towards the implementation of the plastid transformation technology in potato breeding and biotechnology.

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