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Genome-Scale Sequence Disruption Following Biolistic Transformation in Rice and Maize

机译:水稻和玉米基因枪转化后的基因组规模序列破坏。

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摘要

Biolistic transformation delivers nucleic acids into plant cells by bombarding the cells with microprojectiles, which are micron-scale, typically gold particles. Despite the wide use of this technique, little is known about its effect on the cell’s genome. We biolistically transformed linear 48-kb phage lambda and two different circular plasmids into rice (Oryza sativa) and maize (Zea mays) and analyzed the results by whole genome sequencing and optical mapping. Although some transgenic events showed simple insertions, others showed extreme genome damage in the form of chromosome truncations, large deletions, partial trisomy, and evidence of chromothripsis and breakage-fusion bridge cycling. Several transgenic events contained megabase-scale arrays of introduced DNA mixed with genomic fragments assembled by nonhomologous or microhomology-mediated joining. Damaged regions of the genome, assayed by the presence of small fragments displaced elsewhere, were often repaired without a trace, presumably by homology-dependent repair (HDR). The results suggest a model whereby successful biolistic transformation relies on a combination of end joining to insert foreign DNA and HDR to repair collateral damage caused by the microprojectiles. The differing levels of genome damage observed among transgenic events may reflect the stage of the cell cycle and the availability of templates for HDR.
机译:生物射弹转化通过用微米大小的微粒(通常是金颗粒)轰击细胞,将核酸传递到植物细胞中。尽管这项技术得到了广泛应用,但对其细胞基因组的影响知之甚少。我们将线性48-kb噬菌体λ和两个不同的环状质粒进行了生物射弹转化,分别转化为水稻(Oryza sativa)和玉米(Zea mays),并通过全基因组测序和光学作图分析了结果。尽管某些转基因事件显示出简单的插入,但另一些事件则显示出极端的基因组破坏,形式为染色体截短,大缺失,部分三体性,以及出现了染色体杀伤和断裂-融合桥循环的迹象。数个转基因事件包含以非碱基或微同源介导的连接方式组装的,与基因组片段混合的已导入DNA的超大规模阵列。基因组的受损区域(通过在其他地方置换的小片段的存在进行分析)通常被修复而无任何痕迹,大概是通过同源性依赖修复(HDR)。结果提出了一种模型,其中成功的生物射弹转化依赖于末端连接以插入外来DNA和HDR的组合,以修复由微粒引起的附带损害。在转基因事件中观察到的不同程度的基因组损伤可能反映了细胞周期的阶段以及HDR模板的可用性。

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