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Development of Efficient Protocols for Stable and Transient Gene Transformation for Wolffia Globosa Using Agrobacterium

机译:利用土壤杆菌稳定和瞬时转化Wolffia Globosa基因的有效协议的开发

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Members of the Wolffia genus are fascinating plants for many biologists as they are the smallest flowering plants on Earth and exhibit a reduced body plan that is of great interest to developmental biologists. There has also been recent interest in the use of these species for bioenergy or biorefining. Molecular and developmental studies have been limited in Wolffia species due to the high genome complexity and uncertainties regarding the stable genetic transformation. In this manuscript we present new protocols for both stable and transient genetic transformation for Wolffia globosa using Agrobacterium tumefaciens. For the transient transformation, we used Wolffia fronds whereas we used clusters for the stable transformation. As proof of concept we transformed two synthetic promoter constructs driving expression of the GUS marker gene, that have previously been used to monitor auxin and cytokinin output in a variety of species. Using these approaches we obtained a Transformation Efficiency (TE) of 0.14% for the stable transformation and 21.8% for the transient transformation. The efficiency of these two methods of transformation are sufficient to allow future studies to investigate gene function.This is the first report for successful stable transformation of W. globosa.
机译:Wolffia属的成员对许多生物学家而言都是引人入胜的植物,因为它们是地球上最小的开花植物,并且显示出缩小的身体计划,这对发育生物学家非常感兴趣。最近也有兴趣将这些物质用于生物能源或生物精制。由于高基因组复杂性和关于稳定遗传转化的不确定性,对Wolffia物种的分子和发育研究受到了限制。在此手稿中,我们介绍了使用根癌农杆菌对狼草进行稳定和瞬时遗传转化的新方案。对于瞬态转换,我们使用Wolffia叶,而对稳定转换使用簇。作为概念验证,我们转化了两个驱动GUS标记基因表达的合成启动子构建体,这些构建体先前已用于监测多种物种中的生长素和细胞分裂素输出。使用这些方法,我们获得了稳定转换的转换效率(TE)为0.14%,瞬时转换的转换效率(TE)为21.8%。这两种转化方法的效率足以使将来的研究进一步研究基因功能。

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