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PpRT1:在海岸松中分离出的首个完整的类吉普赛逆转座子。

PpRT1: the first complete gypsy-like retrotransposon isolated in Pinus pinaster.

作者信息

Rocheta Margarida, Cordeiro Jorge, Oliveira M, Miguel Célia

机构信息

Forest Biotech Lab, Instituto de Biologia Experimental e Tecnológica (IBET/ITQB), Quinta do Marquês, 2784-505 Oeiras, Portugal.

出版信息

Planta. 2007 Feb;225(3):551-62. doi: 10.1007/s00425-006-0370-5. Epub 2006 Sep 29.

Abstract

We have isolated and characterized a complete retrotransposon sequence, named PpRT1, from the genome of Pinus pinaster. PpRT1 is 5,966 bp long and is closely related to IFG7 gypsy retrotransposon from Pinus radiata. The long terminal repeats (LTRs) have 333 bp each and show a 5.4% sequence divergence between them. In addition to the characteristic polypurine tract (PPT) and the primer binding site (PBS), PpRT1 carries internal regions with homology to retroviral genes gag and pol. The pol region contains sequence motifs related to the enzymes protease, reverse transcriptase, RNAseH and integrase in the same typical order known for Ty3/gypsy-like retrotransposons. PpRT1 was extended from an EST database sequence indicating that its transcription is occurring in pine tissues. Southern blot analyses indicate however, that PpRT1 is present in a unique or a low number of copies in the P. pinaster genome. The differences in nucleotide sequence found between PpRT1 and IFG7 may explain the strikingly different copy number in the two pine species genome. Based on the homologies observed when comparing LTR region among different gypsy elements we propose that the highly conserved LTR regions may be useful to amplify other retrotransposon sequences of the same or close retrotransposon family.

摘要

我们从海岸松基因组中分离并鉴定出一个完整的逆转录转座子序列,命名为PpRT1。PpRT1长5966 bp,与辐射松的IFG7吉普赛逆转录转座子密切相关。长末端重复序列(LTRs)各有333 bp,彼此间序列差异为5.4%。除了特征性的多嘌呤序列(PPT)和引物结合位点(PBS)外,PpRT1还携带与逆转录病毒基因gag和pol具有同源性的内部区域。pol区域包含与蛋白酶、逆转录酶、RNA酶H和整合酶相关的序列基序,其排列顺序与Ty3/吉普赛样逆转录转座子的典型顺序相同。PpRT1由一个EST数据库序列延伸而来,表明其转录发生在松树组织中。然而,Southern杂交分析表明,PpRT1在海岸松基因组中以单拷贝或低拷贝形式存在。PpRT1与IFG7之间发现的核苷酸序列差异可能解释了这两种松树基因组中拷贝数的显著差异。基于比较不同吉普赛元件LTR区域时观察到的同源性,我们认为高度保守的LTR区域可能有助于扩增同一或相近逆转录转座子家族的其他逆转录转座子序列。

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