首页> 美国卫生研究院文献>The EMBO Journal >Capture of genomic and T-DNA sequences during double-strand break repair in somatic plant cells.
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Capture of genomic and T-DNA sequences during double-strand break repair in somatic plant cells.

机译:在体细胞双链断裂修复过程中捕获基因组和T-DNA序列。

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摘要

To analyze genomic changes resulting from double-strand break (DSB) repair, transgenic tobacco plants were obtained that carried in their genome a restriction site of the rare cutting endonuclease I-SceI within a negative selectable marker gene. After induction of DSB repair via Agrobacterium-mediated transient expression of I-SceI, plant cells were selected that carried a loss-of-function phenotype of the marker. Surprisingly, in addition to deletions, in a number of cases repair was associated with the insertion of unique and repetitive genomic sequences into the break. Thus, DSB repair offers a mechanism for spreading different kinds of sequences into new chromosomal positions. This may have evolutionary consequences particularly for plants, as genomic alterations occurring in meristem cells can be transferred to the next generation. Moreover, transfer DNA (T-DNA), carrying the open reading frame of I-SceI, was found in several cases to be integrated into the transgenic I-SceI site. This indicates that DSB repair also represents a pathway for the integration of T-DNA into the plant genome.
机译:为了分析由双链断裂(DSB)修复引起的基因组变化,获得了转基因烟草植物,其在其基因组中带有负选择标记基因内稀有切割核酸内切酶I-SceI的限制性位点。在通过农杆菌介导的I-SceI瞬时表达诱导DSB修复后,选择携带标志物功能丧失表型的植物细胞。出乎意料的是,除缺失外,在许多情况下,修复与在断裂中插入独特和重复的基因组序列有关。因此,DSB修复提供了一种机制,可将不同种类的序列扩展到新的染色体位置。这可能对植物特别是进化,因为分生组织细胞中发生的基因组改变可以转移到下一代。此外,在某些情况下,发现带有I-SceI开放阅读框的转移DNA(T-DNA)已整合到转基因I-SceI位点中。这表明DSB修复也代表了将T-DNA整合到植物基因组中的途径。

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