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拟南芥基因组中的多个非长末端重复逆转座子。

Multiple non-LTR retrotransposons in the genome of Arabidopsis thaliana.

作者信息

Wright D A, Ke N, Smalle J, Hauge B M, Goodman H M, Voytas D F

机构信息

Department of Zoology and Genetics, Iowa State University, Ames 50011, USA.

出版信息

Genetics. 1996 Feb;142(2):569-78. doi: 10.1093/genetics/142.2.569.

Abstract

DNA sequence analysis near the Arabidopsis thaliana ABI3 gene revealed the presence of a non-LTR retrotransposon insertion that we have designated Ta11-1. This insertion is 6.2 kb in length and encodes two overlapping reading frames with similarity to non-LTR retrotransposon proteins, including reverse transcriptase. A polymerase chain reaction assay was developed based on conserved amino acid sequences shared between the Ta11-1 reverse transcriptase and those of non-LTR retrotransposons from other species. Seventeen additional A. thaliana reverse transcriptases were identified that range in nucleotide similarity from 48-88% (Ta12-Ta28). Phylogenetic analyses indicated that the A. thaliana sequences are more closely related to each other than to elements from other organisms, consistent with the vertical evolution of these sequences over most of their evolutionary history. One sequence, Ta17, is located in the mitochondrial genome. The remaining are nuclear and of low copy number among 17 diverse A. thaliana ecotypes tested, suggesting that they are not highly active in transposition. The paucity of retrotransposons and the small genome size of A. thaliana support the hypothesis that most repetitive sequences have been lost from the genome and that mechanisms may exist to prevent amplification of extant element families.

摘要

对拟南芥ABI3基因附近的DNA序列分析发现,存在一个非长末端重复逆转座子插入序列,我们将其命名为Ta11 - 1。该插入序列长度为6.2 kb,编码两个与非长末端重复逆转座子蛋白(包括逆转录酶)具有相似性的重叠阅读框。基于Ta11 - 1逆转录酶与其他物种非长末端重复逆转座子之间共享的保守氨基酸序列,开发了一种聚合酶链反应检测方法。另外鉴定出17个拟南芥逆转录酶,其核苷酸相似性在48% - 88%之间(Ta12 - Ta28)。系统发育分析表明,拟南芥序列之间的亲缘关系比与其他生物体的元件更密切,这与这些序列在其大部分进化历史中的垂直进化一致。其中一个序列Ta17位于线粒体基因组中。其余的位于细胞核中,在所测试的17种不同拟南芥生态型中拷贝数较低,这表明它们在转座方面不太活跃。拟南芥中逆转座子的稀少和基因组的小尺寸支持了这样一种假设,即基因组中大部分重复序列已经丢失,并且可能存在防止现有元件家族扩增的机制。

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