bioRxiv · 10.1101/2025.10.02.680026
Independent genomic trajectories shape adaptation to life on land across animal lineages
Abstract
How animals repeatedly adapted to life on land is a central question in evolutionary biology. While terrestrialisation occurred independently across animal phyla, it remains unclear whether shared genomic mechanisms underlie these transitions. Here, we combine large-scale comparative genomics, machine learning, and multi-omics data, including proteomics and transcriptomics from stress experiments relevant to terrestrial environmental challenges in 17 species, to investigate the genomic basis of animal terrestrial adaptation. Gene co-expression networks reveal that genes relevant to stress are largely lineage-specific, yet converge in function through the co-option of gene families pre-dating terrestrialisation events. Phylogenomic and machine learning analyses support a dominant role for early-evolving genes, enriched in stress-related functions, paired with a higher gene loss than gain at terrestrialisation nodes. Our findings support a model of lineage-specific genomic changes involving mostly conserved genes that converged at the functional level during the independent transitions to terrestrial life.
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Martinez-Redondo, G. I., Eleftheriadi, K., Salces-Ortiz, J., Escudero, N., Fernandez-Alvarez, F. A., Carbonetto, B., Vargas-Chavez, C., Garcia-Vernet, R., Palma-Guerrero, J., Renteria, L., Rojo, I., Chiva, C., Sabido, E., Bombarely, A., Fernandez, R.. 2025-10-03. Independent genomic trajectories shape adaptation to life on land across animal lineages. https://doi.org/10.1101/2025.10.02.680026
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