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Mature seed-derived callus of the model indica rice variety Kasalath is highly competent in Agrobacterium-mediated transformation

机译:模式in稻品种Kasalath的成熟种子衍生愈伤组织在农杆菌介导的转化中非常有能力

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We previously established an efficient Agrobacterium-mediated transformation system using primary calli derived from mature seeds of the model japonica rice variety Nipponbare. We expected that the shortened tissue culture period would reduce callus browninga common problem with the indica transformation system during prolonged tissue culture in the undifferentiated state. In this study, we successfully applied our efficient transformation system to Kasalatha model variety of indica rice. The Luc reporter system is sensitive enough to allow quantitative analysis of the competency of rice callus for Agrobacterium-mediated transformation. We unexpectedly discovered that primary callus of Kasalath exhibits a remarkably high competency for Agrobacterium-mediated transformation compared to Nipponbare. Southern blot analysis and Luc luminescence showed that independent transformation events in primary callus of Kasalath occurred successfully at ca. tenfold higher frequency than in Nipponbare, and single copy T-DNA integration was observed in ~40% of these events. We also compared the competency of secondary callus of Nipponbare and Kasalath and again found superior competency in Kasalath, although the identification and subsequent observation of independent transformation events in secondary callus is difficult due to the vigorous growth of both transformed and non-transformed cells. An efficient transformation system in Kasalath could facilitate the identification of QTL genes, since many QTL genes are analyzed in a Nipponbare c Kasalath genetic background. The higher transformation competency of Kasalath could be a useful trait in the establishment of highly efficient systems involving new transformation technologies such as gene targeting.
机译:我们以前建立了一个有效的农杆菌介导的转化系统,该系统使用衍生自模型粳稻品种Nipponbare的成熟种子的初级愈伤组织。我们期望缩短的组织培养期将减少未分化状态下延长组织培养期间in转化系统的普遍问题。在这项研究中,我们成功地将我们的高效转化系统应用于Ka稻的Kasalatha模型品种。 Luc报告系统足够灵敏,可以定量分析水稻愈伤组织对农杆菌介导的转化的能力。我们出乎意料地发现,与日本晴相比,Kasalath的主要愈伤组织对农杆菌介导的转化表现出非常高的能力。 Southern印迹分析和Luc发光表明,Kasalath原代愈伤组织中独立的转化事件成功地发生在约3℃。频率比日本晴(Nipponbare)高十倍,在这些事件中约40%观察到单拷贝T-DNA整合。我们还比较了Nipponbare和Kasalath继发愈伤组织的能力,并再次在Kasalath中发现了优越的能力,尽管由于转化和未转化细胞的旺盛生长,很难鉴定和随后观察继发愈伤组织中独立转化事件的发生。 Kasalath中有效的转化系统可以促进QTL基因的鉴定,因为许多QTL基因是在Nipponbare c Kasalath遗传背景中进行分析的。 Kasalath较高的转化能力可能是建立涉及新转化技术(例如基因靶向)的高效系统的有用特征。

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