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Genome Rearrangements in Maize Induced by Alternative Transposition of Reversed Ac/Ds Termini

机译:反向Ac / Ds末端的交替转座诱导玉米基因组重排

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摘要

Alternative transposition can induce genome rearrangements, including deletions, inverted duplications, inversions, and translocations. To investigate the types and frequency of the rearrangements elicited by a pair of reversed Ac/Ds termini, we isolated and analyzed 100 new mutant alleles derived from two parental alleles that both contain an intact Ac and a fractured Ac (fAc) structure at the maize p1 locus. Mutants were characterized by PCR and sequencing; the results show that nearly 90% (89/100) of the mutant alleles represent structural rearrangements including deletions, inversions, translocations, or rearrangement of the intertransposon sequence (ITS). Among 37 deletions obtained, 20 extend into the external flanking sequences, while 17 delete portions of the intertransposon sequence. Interestingly, one deletion allele that contains only a single nucleotide between the retained Ac and fAc termini is not competent for further alternative transposition events. We propose a new model for the formation of intertransposon deletions through insertion of reversed transposon termini into sister-chromatid sequences. These results document the types and frequencies of genome rearrangements induced by alternative transposition of reversed Ac/Ds termini in maize.
机译:替代性转座可引起基因组重排,包括缺失,倒置重复,倒置和易位。为了研究由一对反向的Ac / Ds末端引起的重排的类型和频率,我们分离并分析了来自两个亲本等位基因的100个新突变等位基因,这些亲本等位基因在玉米中均包含完整的Ac和断裂的Ac(fAc)结构p1基因座。通过PCR和测序表征突变体;结果表明,将近90%(89/100)的突变等位基因代表结构重排,包括转座子间序列(ITS)的缺失,倒位,易位或重排。在获得的37个缺失中,有20个延伸到外部侧翼序列中,而17个缺失了转座子序列的部分。有趣的是,一个仅在保留的Ac和fAc末端之间仅包含一个核苷酸的缺失等位基因不能胜任进一步的替代转座事件。我们提出了一种通过将反向转座子末端插入姐妹染色单体序列而形成转座子间缺失的新模型。这些结果证明了由玉米中反向Ac / Ds末端的交替转座引起的基因组重排的类型和频率。

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