bioRxiv · 10.1101/2024.07.21.604459
Tiberius: End-to-End Deep Learning with an HMM for Gene Prediction
Abstract
MotivationFor more than 25 years, learning-based eukaryotic gene predictors were driven by hidden Markov models (HMMs), which were directly inputted a DNA sequence. Recently, Holst et al. demonstrated with their program Helixer that the accuracy of ab initio eukaryotic gene prediction can be improved by combining deep learning layers with a separate HMM postprocessor. ResultsWe present Tiberius, a novel deep learning-based ab initio gene predictor that end-to-end integrates convolutional and long short-term memory layers with a differentiable HMM layer. Tiberius uses a custom gene prediction loss and was trained for prediction in mammalian genomes and evaluated on human and two other genomes. It significantly outperforms existing ab initio methods, achieving F1-scores of 62% at gene level for the human genome, compared to 21% for the next best ab initio method. In de novo mode, Tiberius predicts the exon-intron structure of two out of three human genes without error. Remarkably, even Tiberiuss ab initio accuracy matches that of BRAKER3, which uses RNA-seq data and a protein database. Tiberiuss highly parallelized model is the fastest state-of-the-art gene prediction method, processing the human genome in under 2 hours. Availability and Implementationhttps://github.com/Gaius-Augustus/Tiberius Contact{lars.gabriel@uni-greifswald.de, mario.stanke@uni-greifswald.de}
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Gabriel, L., Becker, F., Hoff, K. J., Stanke, M.. 2024-07-23. Tiberius: End-to-End Deep Learning with an HMM for Gene Prediction. https://doi.org/10.1101/2024.07.21.604459
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