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Unraveling the sequence dynamics of the formation of genus-specific satellite DNAs in the family solanaceae

机译:揭示茄科中属特异性卫星DNA形成的序列动力学

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摘要

Tandemly repeated DNAs, referred to as satellite DNAs, often occur in a genome in a genus-specific manner. However, the mechanisms for generation and evolution for these sequences are largely unknown because of the uncertain origins of the satellite DNAs. We found highly divergent genus-specific satellite DNAs that showed sequence similarity with genus-specific intergenic spacers (IGSs) in the family Solanaceae, which includes the genera Nicotiana, Solanum and Capsicum. The conserved position of the IGS between 25S and 18S rDNA facilitates comparison of IGS sequences across genera, even in the presence of very low sequence similarity. Sequence comparison of IGS may elucidate the procedure of the genesis of complex monomer units of the satellite DNAs. Within the IGS of Capsicum species, base substitutions and copy number variation of subrepeat monomers were causes of monomer divergence in IGS sequences. At the level of inter-generic IGS sequences of the family Solanaceae, however, genus-specific motif selection, motif shuffling between subrepeats and differential amplification among motifs were involved in formation of genus-specific IGS. Therefore, the genus-specific satellite DNAs in Solanaceae plants can be generated from differentially organized repeat monomers of the IGS rather than by accumulation of mutations from pre-existent satellite DNAs.
机译:串联重复的DNA(称为卫星DNA)通常以属特异性的方式出现在基因组中。但是,由于卫星DNA的来源不确定,这些序列的产生和进化机制尚不清楚。我们发现高度分化的属特异性卫星DNA与茄科(包括烟草属,茄属和辣椒属)的属特异性基因间间隔区(IGS)表现出序列相似性。即使存在非常低的序列相似性,IGS在25S和18S rDNA之间的保守位置也有助于比较整个属的IGS序列。 IGS的序列比较可以阐明卫星DNA复杂单体单元的生成过程。在辣椒属物种的IGS中,亚重复单体的碱基取代和拷贝数变异是IGS序列中单体差异的原因。然而,在茄科的属间IGS序列水平上,属特异性IGS的形成涉及属特异性基序选择,亚重复之间的基序改组和基序之间的差异扩增。因此,茄科植物中的属特有卫星DNA可以由IGS的不同组织的重复单体产生,而不是通过积累已有卫星DNA的突变而产生。

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