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逆转座子Lyc1-1,是秘鲁番茄基因组中Tntl逆转座子超家族的成员。

Retrolyc1-1, a member of the Tntl retrotransposon super-family in the Lycopersicon peruvianum genome.

作者信息

Costa A P, Scortecci K C, Hashimoto R Y, Araujo P G, Grandbastien M A, Van Sluys M A

机构信息

Depto. de Botânica, Instituto de Biociências-, Universidade de Sao Paulo; Rua do Matao, 277 05508-900, S.P, Brasil.

出版信息

Genetica. 1999 Nov;107(1-3):65-72. doi: 10.1023/A:1004028002883.

Abstract

Retrotransposons are ubiquitous mobile genetic elements that transpose through an RNA intermediate. One of the best known plant retrotransposon, Tnt1, was isolated from tobacco and showed an extensive distribution in the Nicotiana genus. We investigated the presence of related sequences in the Lycopersicon genus, another member of the Solanaceae family. Hybridization experiments performed using Tnt1 probes indicated that homologous sequences were present in all Lycopersicon species, indicating that these Tnt1-related sequences, that we named Retrolyc1, are distributed throughout the Lycopersicon genus. Different distribution patterns were detected between species, demonstrating a potential use of Retrolyc1 elements as molecular markers. An incomplete Retrolyc1 sequence, that we named Retrolyc1-1, was isolated from an L. peruvianum genomic library. Retrolyc1-1 shows extensive homology with Tnt1 sequences except in the LTR U3 region. Since this region is known to be involved in the control of transcription, this strongly suggests the existence of different patterns of regulation for Tnt1 and Retrolyc1 elements. The study of these two elements within the Solanaceae family may provide interesting models for retrotransposon evolution within this group and transmission in host genomes.

摘要

逆转座子是普遍存在的可移动遗传元件,它们通过RNA中间体进行转座。最著名的植物逆转座子之一Tnt1,是从烟草中分离出来的,并且在烟草属中广泛分布。我们研究了茄科的另一个成员番茄属中相关序列的存在情况。使用Tnt1探针进行的杂交实验表明,所有番茄属物种中都存在同源序列,这表明我们命名为Retrolyc1的这些与Tnt1相关的序列在整个番茄属中都有分布。在不同物种之间检测到了不同的分布模式,这表明Retrolyc1元件有可能用作分子标记。从秘鲁番茄基因组文库中分离出一个不完整的Retrolyc1序列,我们将其命名为Retrolyc1-1。Retrolyc1-1与Tnt1序列具有广泛的同源性,但在长末端重复序列(LTR)的U3区域除外。由于已知该区域参与转录调控,这强烈表明Tnt1和Retrolyc1元件存在不同的调控模式。在茄科中对这两个元件的研究可能为该类群中逆转座子的进化以及在宿主基因组中的传播提供有趣的模型。

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