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A novel approach to the generation of seamless constructs for plant transformation

机译:一种用于植物转化的无缝构建体生成的新方法

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Background When creating plant transformation vectors, full control of nucleotides flanking the insert in the final construct may be desirable. Modern ligase-independent methods for DNA-recombination are based on linearization by classical type II restriction endonucleases (REs) alone or in combination with nicking enzymes leaving residual nucleotides behind in the final construct. We here explore the use of type IIS and type IIB REs for vector linearization that combined with sequence and ligase-independent cloning (SLIC) overcomes this problem and promotes seamless gene-insertion in vectors. Providing the basis for a collection of biolistic plant transformation vectors ready to be cloned with different genes-of-interest, we present two vectors, where promoter and terminator are joined by a spacer. During spacer-removal linearization (SRL), type IIS and type IIB REs remove their own recognition sequences from the vector leaving no undesired, short sequences behind. Results We designed two plant transformation vectors prepared for SRL in combination with SLIC, pAUrumII and pAUrumIII, harboring a spacer with recognition sites for a type IIS and IIB RE, respectively. The gene for a green fluorescent protein, gfp, was successfully cloned into both vectors; traces of pAUrumIII, however, contaminated the transformation due to incomplete linearization, an issue not encountered with the type IIS linearized pAUrumII. Both constructs, pAUrumII-gfp and pAUrumIII-gfp, were functional, when tested in vitro on wheat and barley endosperm cells for transient gfp expression. Conclusions All nucleotides flanking an insert in a biolistic plant transformation vector can be customized by means of SRL in combination with SLIC. Especially type IIS REs promote an efficient cloning result. Based on our findings, we believe that the SRL system can be useful in a series of plant transformation vectors, favoring the presence of functional sequences for optimal expression over redundant cloning-site remnants.
机译:背景技术当创建植物转化载体时,可能需要完全控制最终构建体中插入物侧翼的核苷酸。现代的不依赖连接酶的DNA重组方法基于单独的经典II型限制性核酸内切酶(RE)或与切刻酶组合使用线性化技术,在最终构建物中留下了残留的核苷酸。我们在这里探索使用IIS类型和IIB RE类型进行载体线性化,结合序列和连接酶独立克隆(SLIC)克服了这个问题,并促进了载体中无缝基因插入。我们提供了两个载体,其中启动子和终止子通过间隔子连接,为准备好用不同的感兴趣基因克隆的生物射弹植物转化载体提供了基础。在间隔物去除线性化(SRL)期间,IIS类型和IIB RE类型从向量中删除它们自己的识别序列,不留下任何不需要的短序列。结果我们设计了两种为SRL制备的植物转化载体,分别与SLIC,pAUrumII和pAUrumIII结合,具有分别带有IIS和IIB RE型识别位点的间隔子。绿色荧光蛋白基因gfp已成功克隆到两个载体中。但是,由于线性化不完全,微量的pAUrumIII污染了转化,而IIS线性化的pAUrumII类型则没有遇到此问题。当在小麦和大麦胚乳细胞上体外测试瞬时gfp表达时,两种构建体pAUrumII-gfp和pAUrumIII-gfp均具有功能。结论可以通过SRL与SLIC结合定制生物枪型植物转化载体中插入片段两侧的所有核苷酸。特别是类型IIS RE可以提高有效的克隆结果。基于我们的发现,我们相信SRL系统可用于一系列植物转化载体,与多余的克隆位点残基相比,它有利于功能序列的存在以实现最佳表达。

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