SVA Retrotransposons and a Low Copy Repeat in Humans and Great Apes: A Mobile Connection

Author:

Damert Annette1ORCID

Affiliation:

1. Infection Biology Unit and Primate Genetics Laboratory, German Primate Center, Leibniz Institute for Primate Research , Göttingen, Germany

Abstract

Abstract Segmental duplications (SDs) constitute a considerable fraction of primate genomes. They contribute to genetic variation and provide raw material for evolution. Groups of SDs are characterized by the presence of shared core duplicons. One of these core duplicons, low copy repeat (lcr)16a, has been shown to be particularly active in the propagation of interspersed SDs in primates. The underlying mechanisms are, however, only partially understood. Alu short interspersed elements (SINEs) are frequently found at breakpoints and have been implicated in the expansion of SDs. Detailed analysis of lcr16a-containing SDs shows that the hominid-specific SVA (SINE-R-VNTR-Alu) retrotransposon is an integral component of the core duplicon in Asian and African great apes. In orang-utan, it provides breakpoints and contributes to both interchromosomal and intrachromosomal lcr16a mobility by inter-element recombination. Furthermore, the data suggest that in hominines (human, chimpanzee, gorilla) SVA recombination-mediated integration of a circular intermediate is the founding event of a lineage-specific lcr16a expansion. One of the hominine lcr16a copies displays large flanking direct repeats, a structural feature shared by other SDs in the human genome. Taken together, the results obtained extend the range of SVAs’ contribution to genome evolution from RNA-mediated transduction to DNA-based recombination. In addition, they provide further support for a role of circular intermediates in SD mobilization.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

Reference47 articles.

1. An Alu transposition model for the origin and expansion of human segmental duplications;Bailey;Am J Hum Genet,2003

2. Segmental duplications: organization and impact within the current human genome project assembly;Bailey;Genome Res,2001

3. Median-joining networks for inferring intraspecific phylogenies;Bandelt;Mol Biol Evol,1999

4. Alu repeats and human genomic diversity;Batzer;Nat Rev Genet,2002

5. Functional characterization of the Morpheus gene family;Bekpen;bioRxiv,2017

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