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Characterization of high-copy-number retrotransposons from the large genomes of the louisiana iris species and their use as molecular markers.

机译:路易斯安那州虹膜物种的大型基因组的高拷贝数逆转录转座子的表征及其作为分子标记的用途。

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摘要

The Louisiana iris species Iris brevicaulis and I. fulva are morphologically and karyotypically distinct yet frequently hybridize in nature. A group of high-copy-number TY3/gypsy-like retrotransposons was characterized from these species and used to develop molecular markers that take advantage of the abundance and distribution of these elements in the large iris genome. The copy number of these IRRE elements (for iris retroelement), is approximately 1 x 10(5), accounting for approximately 6-10% of the approximately 10,000-Mb haploid Louisiana iris genome. IRRE elements are transcriptionally active in I. brevicaulis and I. fulva and their F(1) and backcross hybrids. The LTRs of the elements are more variable than the coding domains and can be used to define several distinct IRRE subfamilies. Transposon display or S-SAP markers specific to two of these subfamilies have been developed and are highly polymorphic among wild-collected individuals of each species. As IRRE elements are present in each of 11 iris species tested, the marker system has the potential to provide valuable comparative data on the dynamics of retrotransposition in large plant genomes.
机译:路易斯安那州虹膜虹膜鸢尾和富叶鸢尾在形态和核型上是不同的,但在自然界中经常杂交。从这些物种中鉴定出一组高拷贝数的TY3 /吉普赛样逆转录转座子,并用于开发分子标记,这些分子标记利用了这些元素在大虹膜基因组中的丰度和分布。这些IRRE元素的拷贝数(用于虹膜重建)约为1 x 10(5),约占10,000 Mb单倍体路易斯安那虹膜基因组的6-10%。 IRRE元素在短缩杆菌和富叶杆菌及其F(1)和回交杂种中具有转录活性。元素的LTR比编码域可变得多,可用于定义几个不同的IRRE子家族。已经开发出了针对这两个亚科的转座子展示或S-SAP标记,并且在每个物种的野生采集个体中具有高度多态性。由于IRRE元素存在于所测试的11种虹膜物种中的每一种中,因此标记系统有潜力提供有关大型植物基因组中反转录转座动力学的有价值的比较数据。

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