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玉米Mu1转座元件的体细胞切除

Somatic excision of the Mu1 transposable element of maize.

作者信息

Doseff A, Martienssen R, Sundaresan V

机构信息

Cold Spring Harbor Laboratory, NY 11724.

出版信息

Nucleic Acids Res. 1991 Feb 11;19(3):579-84. doi: 10.1093/nar/19.3.579.

Abstract

The Mu transposons of the Robertsons's Mutator transposable element system in maize are unusual in many respects, when compared to the other known plant transposon systems. The excision of these elements occurs late in somatic tissues and very rarely in the germ line. Unlike the other plant transposons, there is no experimental evidence directly linking Mu element excision and integration. We have analyzed the excision products generated by a Mu1 transposon inserted into the bronze 1 locus of maize. We find that the excision products or 'footprints' left by the Mu1 element resemble those of the other plant transposable elements, rather than those of the animal transposable element systems. We also find some novel types of footprints resembling recombinational events. We suggest that the Mu1 element can promote intrachromosomal crossovers and conversions near its site of insertion, and that this may be another mechanism by which transposons can accelerate the evolution of genomes.

摘要

与其他已知的植物转座子系统相比,玉米中罗伯逊氏Mutator转座元件系统的Mu转座子在许多方面都不寻常。这些元件在体细胞组织中切除发生较晚,在生殖系中则很少发生。与其他植物转座子不同,没有实验证据直接将Mu元件的切除与整合联系起来。我们分析了插入到玉米青铜1位点的Mu1转座子产生的切除产物。我们发现,Mu1元件留下的切除产物或“足迹”类似于其他植物转座元件的产物,而不是动物转座元件系统的产物。我们还发现了一些类似于重组事件的新型足迹。我们认为,Mu1元件可以促进其插入位点附近的染色体内交叉和转换,这可能是转座子加速基因组进化的另一种机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94c3/333651/ddee3e7e7fed/nar00239-0158-a.jpg

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