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马类中的古老分段重复 LCORL 返座。

Ancient segmentally duplicated LCORL retrocopies in equids.

机构信息

Department of Population Health and Reproduction, University of California Davis, Davis, CA, United States of America.

Veterinary Integrative Biosciences, School of Veterinary Medicine and Biomedical Sciences, Texas A&M University, College Station, Texas, United States of America.

出版信息

PLoS One. 2023 Jun 8;18(6):e0286861. doi: 10.1371/journal.pone.0286861. eCollection 2023.

Abstract

LINE-1 is an active transposable element encoding proteins capable of inserting host gene retrocopies, resulting in retro-copy number variants (retroCNVs) between individuals. Here, we performed retroCNV discovery using 86 equids and identified 437 retrocopy insertions. Only 5 retroCNVs were shared between horses and other equids, indicating that the majority of retroCNVs inserted after the species diverged. A large number (17-35 copies) of segmentally duplicated Ligand Dependent Nuclear Receptor Corepressor Like (LCORL) retrocopies were present in all equids but absent from other extant perissodactyls. The majority of LCORL transcripts in horses and donkeys originate from the retrocopies. The initial LCORL retrotransposition occurred 18 million years ago (17-19 95% CI), which is coincident with the increase in body size, reduction in digit number, and changes in dentition that characterized equid evolution. Evolutionary conservation of the LCORL retrocopy segmental amplification in the Equidae family, high expression levels and the ancient timeline for LCORL retrotransposition support a functional role for this structural variant.

摘要

LINE-1 是一种活跃的转座元件,能够编码插入宿主基因反转录副本的蛋白质,导致个体之间的反转录拷贝数变异(retroCNVs)。在这里,我们使用 86 匹马进行了 retroCNV 发现,并鉴定了 437 个反转录插入。马和其他马科动物之间仅共享 5 个 retroCNVs,这表明大多数 retroCNVs 是在物种分化后插入的。大量(17-35 个拷贝)的片段重复 Ligand Dependent Nuclear Receptor Corepressor Like(LCORL)反转录拷贝存在于所有马科动物中,但在其他现存的奇蹄目动物中不存在。马和驴的大多数 LCORL 转录本来自反转录拷贝。LCORL 的最初反转录发生在 1800 万年前(17-19 95%置信区间),与马科动物进化过程中体型增大、趾数减少和牙齿变化相一致。LCORL 反转录拷贝在马科动物家族中的保守性片段扩增、高表达水平以及 LCORL 反转录的古老时间线支持了这种结构变异的功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9328/10249811/ce432fca8ac0/pone.0286861.g001.jpg

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