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有袋动物卫星 DNA 忠实反映了长末端重复反转录元件的结构。

Marsupial satellite DNA as faithful reflections of long-terminal repeat retroelement structure.

机构信息

Center for Evolutionary Origins of Human Behavior, Kyoto University, Inuyama City, Japan.

Noichi Zoological Park of Kochi Prefecture, Konan City, Japan.

出版信息

Genome. 2022 Sep 1;65(9):469-478. doi: 10.1139/gen-2022-0039. Epub 2022 Aug 5.

DOI:10.1139/gen-2022-0039
PMID:35930809
Abstract

Long terminal repeat (LTR) retroelements, including endogenous retroviruses, are one of the origins of satellite DNAs. However, the vast majority of satellite DNAs originating from LTR retroelements consists of parts of the element. In addition, they frequently contain sequences unrelated to that element. Here we report a novel marsupial satellite DNA (named walbRep) that contains, and consists solely of, the entire sequence of an LTR retroelement (the element). As is common with LTR retroelements, copies exhibit length variation. We focused on the abundance of copies of a specific length (2.7 kb) in the genome of the red-necked wallaby. Cloning and analyses of long genomic DNA fragments revealed a satellite DNA in which the LTR sequence (0.4 kb) and the sequence of the internal region of a nonautonomous copy (2.3 kb) were repeated alternately. The junctions between these two components exhibited the same end-to-end arrangements as those in the element. This satellite organization could be accounted for by a simple formation model that includes slippage during chromosome pairing followed by homologous recombination but does not invoke any other types of rearrangements. We discuss the possible reasons why satellite DNAs having such structures are rarely found in mammals.

摘要

长末端重复(LTR)反转录元件,包括内源性逆转录病毒,是卫星 DNA 的起源之一。然而,起源于 LTR 反转录元件的绝大多数卫星 DNA 仅由元件的一部分组成。此外,它们经常包含与该元件无关的序列。在这里,我们报告了一种新型的有袋动物卫星 DNA(命名为 walbRep),它包含且仅由 LTR 反转录元件( 元件)的整个序列组成。与 LTR 反转录元件一样, 拷贝表现出长度变异。我们专注于基因组中特定长度(2.7 kb)的拷贝的丰度。克隆和长基因组 DNA 片段分析揭示了一种卫星 DNA,其中 LTR 序列(0.4 kb)和非自主 拷贝的内部区域序列(2.3 kb)重复交替。这两个组件之间的连接与 元件中的连接具有相同的端到端排列。这种卫星结构可以通过一个简单的形成模型来解释,该模型包括染色体配对过程中的滑动,随后是同源重组,但不涉及任何其他类型的重排。我们讨论了为什么在哺乳动物中很少发现具有这种结构的卫星 DNA 的可能原因。

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