RepeatModeler2 for automated genomic discovery of transposable element families
2020/04/16 by Jullien M. Flynn, Robert Hubley, Clément Goubert +4 · 286 citations
Agricultural and Biological Sciences · Biochemistry, Genetics and Molecular Biology · #Chromosomal and Genetic Variations #Genomics and Phylogenetic Studies #RNA and protein synthesis mechanisms
paper · doi:10.1073/pnas.1921046117
openalex publication_date 2020/04/16 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/30
Abstract
The accelerating pace of genome sequencing throughout the tree of life is driving the need for improved unsupervised annotation of genome components such as transposable elements (TEs). Because the types and sequences of TEs are highly variable across species, automated TE discovery and annotation are challenging and time-consuming tasks. A critical first step is the de novo identification and accurate compilation of sequence models representing all of the unique TE families dispersed in the genome. Here we introduce RepeatModeler2, a pipeline that greatly facilitates this process. This program brings substantial improvements over the original version of RepeatModeler, one of the most widely used tools for TE discovery. In particular, this version incorporates a module for structural discovery of complete long terminal repeat (LTR) retroelements, which are widespread in eukaryotic genomes but recalcitrant to automated identification because of their size and sequence complexity. We benchmarked RepeatModeler2 on three model species with diverse TE landscapes and high-quality, manually curated TE libraries: Drosophila melanogaster (fruit fly), Danio rerio (zebrafish), and Oryza sativa (rice). In these three species, RepeatModeler2 identified approximately 3 times more consensus sequences matching with >95% sequence identity and sequence coverage to the manually curated sequences than the original RepeatModeler. As expected, the greatest improvement is for LTR retroelements. Thus, RepeatModeler2 represents a valuable addition to the genome annotation toolkit that will enhance the identification and study of TEs in eukaryotic genome sequences. RepeatModeler2 is available as source code or a containerized package under an open license ( https://github.com/Dfam-consortium/RepeatModeler , http://www.repeatmasker.org/RepeatModeler/ ).
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- Newly Sequenced Genomes Reveal Patterns of Gene Family Expansion in Select Dragonflies (Odonata: Anisoptera)
- Genome and transcriptome of Selaginella kraussiana reveal evolution of root apical meristems in vascular plants
- Genomic resources for Asian ( Elephas maximus ) and African savannah elephant ( Loxodonta africana ) conservation and health research
- Transposons drove the evolution of a male sex-determining gene from a female gene with deep introgression across cichlids
- Replicate avian hybrid zones reveal the progression of genetic and trait introgression through time
- A High-quality Reference Genome and Tissue Expression Atlas for the European Lobster (Homarus gammarus).
- The genome of Citrus australasica reveals disease resistance and other species specific genes
- The haplotype-resolved chromosome pairs of a heterozygous diploid African cassava cultivar reveal novel pan-genome and allele-specific transcriptome features
- The Cycas genome and the early evolution of seed plants
- A Beginner's Guide to Structural Variants in Eco‐Evolutionary Population Genomics
- Embryonic piRNAs target horizontally transferred vertebrate transposons in assassin bugs
- A lettuce receptor-like kinase recognizes the highly conserved heptapeptide motif within microbial Nep1-like proteins
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