Cross-species modeling of plant genomes at single-nucleotide resolution using a pretrained DNA language model

Межвидовое моделирование геномов растений на уровне отдельных нуклеотидов с использованием предварительно обученной языковой модели ДНК
Yair Schiff, Volodymyr Kuleshov, Edward S. Buckler, Armin Scheben, M. Cinta Romay, Aaron Gokaslan, Zong-Yan Liu, Jingjing Zhai, Ana Berthel, Wei‐Yun Lai, Zachary Miller, Michelle C. Stitzer
2025-06-09

PlantCaduceuscross-species genomic transferplant DNA language modelsplice site predictionvariant effect prediction
Interpreting function and fitness effects in diverse plant genomes requires transferable models. Language models (LMs) pretrained on large-scale biological sequences can capture evolutionary conservation and offer cross-species prediction better than supervised models through fine-tuning limited labeled data. We introduce PlantCaduceus, a plant DNA LM that learns evolutionary conservation patterns in 16 angiosperm genomes by modeling both DNA strands simultaneously. When fine-tuned on a small set of labeled Arabidopsis data for tasks such as predicting translation initiation/termination sites and splice donor/acceptor sites, PlantCaduceus demonstrated remarkable transferability to maize, which diverged 160 Mya. The model outperformed the best existing DNA language model by 1.45-fold in maize splice donor prediction and 7.23-fold in maize translation initiation site prediction. In variant effect prediction, PlantCaduceus showed performance comparative to state-of-the-art protein LMs. Mutations predicted to be deleterious by PlantCaduceus showed threefold lower average minor allele frequencies compared to those identified by multiple sequence alignment-based methods. Additionally, PlantCaduceus successfully identifies well-known causal variants in both Arabidopsis and maize. Overall, PlantCaduceus is a versatile DNA LM that can accelerate plant genomics and crop breeding applications.
1
Fine-tuning on limited labeled Arabidopsis data enabled strong transfer to maize, despite approximately 160 million years of evolutionary divergence.
2
For variant-effect prediction, PlantCaduceus performed comparably to state-of-the-art protein language models and identified known causal variants in Arabidopsis and maize.
3
PlantCaduceus is a plant DNA language model pretrained on 16 angiosperm genomes while modeling both DNA strands simultaneously.
4
PlantCaduceus outperformed the best existing DNA language model by 1.45-fold for maize splice donor prediction and 7.23-fold for maize translation initiation prediction.
5
Variants predicted deleterious by PlantCaduceus had threefold lower average minor allele frequencies than variants identified using multiple-sequence-alignment methods.

Plant genomes from 16 angiosperm species, with Arabidopsis and maize used for cross-species evaluation

Cross-species single-nucleotide prediction of genomic function, splice and translation sites, and mutation effects using evolutionary conservation patterns

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2025-06-09
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Authors
Yair Schiff
Volodymyr Kuleshov
Edward S. Buckler
Armin Scheben
M. Cinta Romay
Aaron Gokaslan
Zong-Yan Liu
Jingjing Zhai
Ana Berthel
Wei‐Yun Lai
Zachary Miller
Michelle C. Stitzer
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