Ancient persistence and newfound diversity of CR1-group retrotransposons across chordates

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Abstract

Retrotransposons are mobile, repetitive DNA sequences that are ubiquitous across eukaryotes and widely recognised as key drivers of both gene and genome evolution. The CR1 group of retrotransposons is thought to have been present in the most recent common ancestor of chordates ∼560 mya, and is the dominant retrotransposon in the majority of chordate species. The advent of long-read sequencing technologies has enabled the assembly of high-quality genomes from representatives of almost all major chordate orders, enabling comparative analysis with deeply divergent species. To better understand the composition of CR1-group elements (CGEs) in chordates, we systematically characterised full-length, recently active transposable elements across representative species from every available extant order of chordate. Our analysis uncovered previously unknown phylogenetic relationships of CGEs within and between species and has pushed back the origin of certain CR1-group subclades by tens of millions of years. Additionally, entirely novel elements with no close relatives in existing databases were uncovered within several of the species analysed. We also detected numerous putative horizontal transfer events, many of which had not been previously documented. Overall, this investigation has provided the first chordate-wide analysis of an element that is historically understudied yet plays a pivotal role in genome biology and evolution.
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Abstract Retrotransposons are mobile, repetitive DNA sequences that are ubiquitous across eukaryotes and widely recognised as key drivers of both gene and genome evolution. The CR1 group of retrotransposons is thought to have been present in the most recent common ancestor of chordates ∼560 mya, and is the dominant retrotransposon in the majority of chordate species. The advent of long-read sequencing technologies has enabled the assembly of high-quality genomes from representatives of almost all major chordate orders, enabling comparative analysis with deeply divergent species. To better understand the composition of CR1-group elements (CGEs) in chordates, we systematically characterised full-length, recently active transposable elements across representative species from every available extant order of chordate. Our analysis uncovered previously unknown phylogenetic relationships of CGEs within and between species and has pushed back the origin of certain CR1-group subclades by tens of millions of years. Additionally, entirely novel elements with no close relatives in existing databases were uncovered within several of the species analysed. We also detected numerous putative horizontal transfer events, many of which had not been previously documented. Overall, this investigation has provided the first chordate-wide analysis of an element that is historically understudied yet plays a pivotal role in genome biology and evolution. Competing Interest Statement The authors have declared no competing interest. Footnotes Fixed error in Figure 1 CGE presence-absence matrix for Thalassophryne amazonica

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europepmc
last seen: 2026-05-20T01:45:00.602351+00:00
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last seen: 2026-05-22T02:00:06.705733+00:00
License: CC-BY-4.0