Transposable element islands facilitate adaptation to novel environments in an invasive species

L Schrader, JW Kim, D Ence, A Zimin, A Klein… - Nature …, 2014 - nature.com
L Schrader, JW Kim, D Ence, A Zimin, A Klein, K Wyschetzki, T Weichselgartner, C Kemena
Nature communications, 2014nature.com
Adaptation requires genetic variation, but founder populations are generally genetically
depleted. Here we sequence two populations of an inbred ant that diverge in phenotype to
determine how variability is generated. Cardiocondyla obscurior has the smallest of the
sequenced ant genomes and its structure suggests a fundamental role of transposable
elements (TEs) in adaptive evolution. Accumulations of TEs (TE islands) comprising 7.18%
of the genome evolve faster than other regions with regard to single-nucleotide variants …
Abstract
Adaptation requires genetic variation, but founder populations are generally genetically depleted. Here we sequence two populations of an inbred ant that diverge in phenotype to determine how variability is generated. Cardiocondyla obscurior has the smallest of the sequenced ant genomes and its structure suggests a fundamental role of transposable elements (TEs) in adaptive evolution. Accumulations of TEs (TE islands) comprising 7.18% of the genome evolve faster than other regions with regard to single-nucleotide variants, gene/exon duplications and deletions and gene homology. A non-random distribution of gene families, larvae/adult specific gene expression and signs of differential methylation in TE islands indicate intragenomic differences in regulation, evolutionary rates and coalescent effective population size. Our study reveals a tripartite interplay between TEs, life history and adaptation in an invasive species.
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