烟草属植物中Tnt1反转录转座子的进化分析揭示了其调控序列的高度变异性。

The evolutionary analysis of the Tnt1 retrotransposon in Nicotiana species reveals the high variability of its regulatory sequences.

作者信息

Vernhettes S, Grandbastien M A, Casacuberta J M

机构信息

Laboratoire de Biologie Cellulaire, Institut National de la Recherche Agronomique, Versailles, France.

出版信息

Mol Biol Evol. 1998 Jul;15(7):827-36. doi: 10.1093/oxfordjournals.molbev.a025988.

Abstract

We studied the evolution of the tobacco Tnt1 retrotransposon by analyzing Tnt1 partial sequences containing both coding domains and U3 regulatory sequences obtained from a number of Nicotiana species. We detected three different subfamilies of Tnt1 elements, Tnt1A, Tnt1B, and Tnt1C, that differ completely in their U3 regions but share conserved flanking coding and LTR regions. U3 divergence between the three subfamilies is found in the region that contains the regulatory sequences that control the expression of the well-characterized Tnt1-94 element. This suggests that expression of the three Tnt1 subfamilies might be differently regulated. The three Tnt1 subfamilies were present in the Nicotiana genome at the time of species divergence, but have evolved independently since then in the different genomes. Each Tnt1 subfamily seems to have conserved its ability to transpose in a limited and different number of Nicotiana species. Our results illustrate the high variability of Tnt1 regulatory sequences. We propose that this high sequence variability could allow these elements to evolve regulatory mechanisms in order to optimize their coexistence with their host genome.

摘要

我们通过分析从多个烟草属物种中获得的包含编码结构域和U3调控序列的烟草Tnt1逆转录转座子部分序列,研究了其进化情况。我们检测到Tnt1元件的三个不同亚家族,即Tnt1A、Tnt1B和Tnt1C,它们的U3区域完全不同,但共享保守的侧翼编码区和LTR区域。三个亚家族之间的U3差异存在于包含控制已充分表征的Tnt1-94元件表达的调控序列的区域。这表明三个Tnt1亚家族的表达可能受到不同的调控。在物种分化时,三个Tnt1亚家族就已存在于烟草属基因组中,但自那时起在不同基因组中独立进化。每个Tnt1亚家族似乎都保留了在有限数量且不同的烟草属物种中进行转座的能力。我们的结果说明了Tnt1调控序列的高度变异性。我们提出,这种高度的序列变异性可能使这些元件能够进化出调控机制,以优化它们与宿主基因组的共存。

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