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Ancient lineages of non-LTR retrotransposons in the primitive eukaryote, Giardia lamblia

机译:原始真核生物(Giardia lamblia)中非LTR反转录转座子的古老谱系

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摘要

Mobile elements that use reverse transcriptase to make new copies of themselves are found in all major lineages of eukaryotes, The non-long terminal repeat (non-LTR) retrotransposons have been suggested to be the oldest of these eukaryotic elements. Phylogenetic analysis of non-LTR elements suggests that they have predominantly undergone vertical transmission. as opposed to the frequent horizontal transmissions found for other mobile elements. One prediction of this vertical model of inheritance is that the oldest lineages of eukaryotes should exclusively harbor the oldest lineages of non-LTR retrotransposons. Here we characterize the non-LTR retrotransposons present in one of the most primitive eukaryotes, the diplomonad Giardia lamblia. Two families of elements were detected in the WB isolate of G. lamblia currently being used for the genome sequencing project, These elements are clearly distinct from all other previously described non-LTR lineages. Phylogenetic analysis indicates that these Genie elements (for Giardia early non-LTR insertion element) are among the oldest known lineages of non-LTR elements consistent with strict vertical descent. Genie elements encode a single open reading frame with a carboxyl terminal endonuclease domain. Genie I is site specific, as seven to eight copies are present in a single tandem array of a 771-bp repeat near the telomere of one chromosome. The function of this repeat is not known. One additional. highly divergent. element within the Genie I lineage is not located in this tandem array but is near a second telomere. Four different telomere addition sites could be identified within or near the Genie elements on each of these chromosomes. The second lineage of non-LTR elements, Genie 2. is composed of about 10 degenerate copies. Genie 2 elements do not appear to be site specific in their insertion. An unusual aspect of Genie 2 is that all copies contain inverted repeats up to 172 bp in length.
机译:在真核生物的所有主要谱系中都发现了使用逆转录酶自身产生新拷贝的移动元件,非长末端重复序列(非LTR)反转录转座子被认为是这些真核生物元件中最古老的。对非LTR元素的系统发育分析表明,它们主要经历了垂直传播。与其他移动元件的频繁水平传输相反。这种垂直遗传模型的一个预测是,最古老的真核生物谱系应该只包含最古老的非LTR逆转录转座子谱系。在这里,我们表征了存在于最原始的真核生物之一,双单胞菌贾第鞭毛虫中存在的非LTR逆转录转座子。在目前用于基因组测序项目的 G. lamblia 的 WB 分离株中检测到两个元素家族,这些元素与先前描述的所有其他非 LTR 谱系明显不同。系统发育分析表明,这些精灵元件(对于贾第鞭毛虫早期的非LTR插入元件)是已知最古老的非LTR元件谱系之一,与严格的垂直血统一致。精灵元件编码具有羧基末端核酸内切酶结构域的单个开放阅读框。Genie I 是位点特异性的,因为在一条染色体端粒附近的 771 bp 重复序列的单个串联阵列中存在 7 到 8 个拷贝。这种重复的功能尚不清楚。一个额外的。高度发散。精灵 I 谱系中的元素不位于该串联阵列中,而是位于第二个端粒附近。可以在每条染色体上的精灵元件内或附近识别出四个不同的端粒添加位点。非LTR元素的第二个谱系,精灵2。由大约 10 个退化的副本组成。精灵 2 元素在插入时似乎不是特定位点的。Genie 2 的一个不寻常的方面是,所有副本都包含长达 172 bp 的反向重复。

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