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AGROBEST: an efficient Agrobacterium-mediated transient expression method for versatile gene function analyses in Arabidopsis seedlings

机译:AGROBEST:一种有效的农杆菌介导的瞬时表达方法,可用于拟南芥幼苗中的多种基因功能分析

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Background Transient gene expression via Agrobacterium-mediated DNA transfer offers a simple and fast method to analyze transgene functions. Although Arabidopsis is the most-studied model plant with powerful genetic and genomic resources, achieving highly efficient and consistent transient expression for gene function analysis in Arabidopsis remains challenging. Results We developed a highly efficient and robust Agrobacterium-mediated transient expression system, named AGROBEST (Agrobacterium-mediated enhanced seedling transformation), which achieves versatile analysis of diverse gene functions in intact Arabidopsis seedlings. Using β-glucuronidase (GUS) as a reporter for Agrobacterium-mediated transformation assay, we show that the use of a specific disarmed Agrobacterium strain with vir gene pre-induction resulted in homogenous GUS staining in cotyledons of young Arabidopsis seedlings. Optimization with AB salts in plant culture medium buffered with acidic pH 5.5 during Agrobacterium infection greatly enhanced the transient expression levels, which were significantly higher than with two existing methods. Importantly, the optimized method conferred 100% infected seedlings with highly increased transient expression in shoots and also transformation events in roots of ~70% infected seedlings in both the immune receptor mutant efr-1 and wild-type Col-0 seedlings. Finally, we demonstrated the versatile applicability of the method for examining transcription factor action and circadian reporter-gene regulation as well as protein subcellular localization and protein–protein interactions in physiological contexts. Conclusions AGROBEST is a simple, fast, reliable, and robust transient expression system enabling high transient expression and transformation efficiency in Arabidopsis seedlings. Demonstration of the proof-of-concept experiments elevates the transient expression technology to the level of functional studies in Arabidopsis seedlings in addition to previous applications in fluorescent protein localization and protein–protein interaction studies. In addition, AGROBEST offers a new way to dissect the molecular mechanisms involved in Agrobacterium-mediated DNA transfer.
机译:背景技术通过农杆菌介导的DNA转移进行瞬时基因表达提供了一种简单而快速的方法来分析转基因功能。尽管拟南芥是研究最多的模型植物,具有强大的遗传和基因组资源,但是在拟南芥中实现高效,一致的瞬时表达以进行基因功能分析仍然具有挑战性。结果我们开发了一种高效,强大的农杆菌介导的瞬时表达系统,称为AGROBEST(农杆菌介导的增强幼苗转化),该系统可对完整拟南芥幼苗中的多种基因功能进行多功能分析。使用β-葡萄糖醛酸苷酶(GUS)作为农杆菌介导的转化测定的报告子,我们显示带有vir基因预诱导的特定解除武装的农杆菌菌株的使用导致年轻拟南芥幼苗的子叶中均一的GUS染色。农杆菌感染过程中在酸性pH 5.5缓冲的植物培养基中用AB盐进行的优化大大增强了瞬时表达水平,该水平显着高于两种现有方法。重要的是,优化的方法可以使100%受感染的苗在芽中的瞬时表达高度增加,并且还可以在免疫受体突变体efr-1和野生型Col-0苗中向约70%受感染的苗的根中转化。最后,我们证明了该方法在生理环境中检查转录因子作用和昼夜节律性记者基因调控以及蛋白质亚细胞定位和蛋白质-蛋白质相互作用的通用性。结论AGROBEST是一个简单,快速,可靠且强大的瞬时表达系统,可在拟南芥幼苗中实现较高的瞬时表达和转化效率。除了先前在荧光蛋白质定位和蛋白质-蛋白质相互作用研究中的应用以外,概念验证实验的论证还提高了瞬时表达技术在拟南芥幼苗中的功能研究水平。此外,AGROBEST提供了一种新方法来剖析农杆菌介导的DNA转移所涉及的分子机制。

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