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DOE OSTI · code-190165

Genomic Language model for Annotation of Repetitive Elements (GLARE) v1.0

Abstract

GLARE (Genomic Language model for Annotation of Repetitive Elements) is a tool that classifies transposable elements (TEs)—the mobile, repetitive DNA sequences that make up large fractions of eukaryotic genomes. GLARE fine-tunes the NTv3-650M genomic language model on a harmonized collection of curated TE sequences from the PanTEon and Repbase reference databases, assigning each input sequence to one of 11 orders and 32 superfamilies in a Wicker-compatible taxonomy. Features. From nucleotide FASTA input, GLARE outputs per-sequence predictions, class summaries, composition figures, and an annotated FASTA. It provides calibrated confidence scores with optional abstention and runs on CPU or GPU. Uses. GLARE serves as a classification component in genome-annotation pipelines, downstream of TE discovery, supporting genome annotation and comparative and evolutionary genomics. Advantages. GLARE is the first repeat-element classifier to leverage a pretrained genomic language model. Combined with multi-database training, this approach outperformed all nine classifiers in the PanTEon benchmark, generalized better to unseen taxonomic clades, and remained robust to sequence orientation—a common failure mode of existing tools.

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BibTeXRIS

Bruna, Tomas [Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)], Haas, Nicolas [Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)]. 2026-08-20. Genomic Language model for Annotation of Repetitive Elements (GLARE) v1.0. https://doi.org/10.11578/dc.20260826.1

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