...
首页> 外文期刊>Nucleic acids research >Transposon Ac/Ds-induced chromosomal rearrangements at the rice OsRLG5 locus
【24h】

Transposon Ac/Ds-induced chromosomal rearrangements at the rice OsRLG5 locus

机译:转座子Ac / Ds诱导的水稻OsRLG5基因座的染色体重排

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Previous studies have shown that pairs of closely-linked Ac/Ds transposable elements can induce various chromosomal rearrangements in plant genomes. To study chromosomal rearrangements in rice, we isolated a line (OsRLG5-161) that contains two inversely-oriented Ds insertions in OsRLG5 (Oryza sativa Receptor like kinase Gene 5). Among approximately 300 plants regenerated from OsRLG5-161 heterozygous seeds, 107 contained rearrangements including deletions, duplications and inversions of various sizes. Most rearrangements were induced by previously identified alternative transposition mechanism. Furthermore, we also detected a new class of rearrangements that contain juxtaposed inversions and deletions on the same chromosome. We propose that these novel alleles were generated by a previously unreported type of alternative transposition reactions involving the 5′ and 3′ termini of two inversely-oriented Ds elements located on the same chromatid. Finally, 11% of rearrangements contained inversions resulting from homologous recombination between the two inverted Ds elements in OsRLG5-161. The high frequency inheritance and great variety of rearrangements obtained suggests that the rice regeneration system results in a burst of transposition activity and a relaxation of the controls which normally limit the transposition competence of individual Ds termini. Together, these results demonstrate a greatly enlarged potential of the Ac/Ds system for plant chromosome engineering.
机译:先前的研究表明,成对的紧密连接的Ac / Ds转座因子可以诱导植物基因组中的各种染色体重排。为了研究水稻中的染色体重排,我们分离了一个品系(OsRLG5-161),该品系在OsRLG5(水稻蛋白受体,如激酶基因5)中含有两个反向Ds插入。从OsRLG5-161杂合种子再生的大约300株植物中,有107株包含重排,包括各种大小的缺失,重复和倒位。大多数重排是由先前确定的替代转座机制引起的。此外,我们还检测到一类新的重排,其中包含同一条染色体上并列的倒置和缺失。我们建议,这些新颖的等位基因是由以前未报道过的交替易位反应类型产生的,该反应涉及位于同一染色单体上的两个反向定向Ds元件的5'和3'末端。最后,11%的重排包含由OsRLG5-161中两个反向Ds元素之间的同源重组导致的反向。高频遗传和获得的多种重排表明水稻再生系统导致转座活性的爆发和对照的松弛,这通常限制了单个Ds末端的转座能力。总之,这些结果证明了Ac / Ds系统在植物染色体工程中的巨大潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号