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Combining Nanopore and Illumina Sequencing Permits Detailed Analysis of Insertion Mutations and Structural Variations Produced by PEG-Mediated Transformation in

机译:组合纳米孔和Illumina测序允许通过PEG介导的转化产生的插​​入突变和结构变化进行详细分析

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摘要

Ostreococcus tauri is a simple unicellular green alga representing an ecologically important group of phytoplankton in oceans worldwide. Modern molecular techniques must be developed in order to understand the mechanisms that permit adaptation of microalgae to their environment. We present for the first time in O. tauri a detailed characterization of individual genomic integration events of foreign DNA of plasmid origin after PEG-mediated transformation. Vector integration occurred randomly at a single locus in the genome and mainly as a single copy. Thus, we confirmed the utility of this technique for insertional mutagenesis. While the mechanism of double-stranded DNA repair in the O. tauri model remains to be elucidated, we clearly demonstrate by genome resequencing that the integration of the vector leads to frequent structural variations (deletions/insertions and duplications) and some chromosomal rearrangements in the genome at the insertion loci. Furthermore, we often observed variations in the vector sequence itself. From these observations, we speculate that a nonhomologous end-joining-like mechanism is employed during random insertion events, as described in plants and other freshwater algal models. PEG-mediated transformation is therefore a promising molecular biology tool, not only for functional genomic studies, but also for biotechnological research in this ecologically important marine alga.
机译:欧洲气球托特是一个简单的单细胞绿色藻类,代表全球海洋的生态重要性浮游植物。必须开发现代分子技术,以了解允许将微藻对其环境调整的机制。我们首次出现在O. Tauri的第一次详细表征PEG介导的转化后质粒源性异常DNA的个体基因组集成事件。矢量集成在基因组的单个轨迹上随机发生,主要是单一副本。因此,我们确认了这种技术对插入诱变的效用。虽然O. TAURI模型中双链DNA修复的机制仍有待阐明,但我们清楚地证明了基因组重构,即载体的整合导致频繁的结构变化(缺失/插入和重复)和一些染色体重排插入基因座的基因组。此外,我们经常观察向量序列本身的变化。从这些观察结果来看,我们推测在随机插入事件期间使用非博学终端连接机制,如植物和其他淡水藻类模型中所述。因此,PEG介导的转化是一个有前途的分子生物学工具,不仅用于功能基因组研究,而且还用于这种生态重要的海藻的生物技术研究。

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