Coping with extremes: How Epigenetic and Molecular Adaptations Enable Earthworms to Thrive in Volcanic Soils
Rimington, O.; Novo, M.; Hodson, M. E.; Camarinho, R.; Viveiros, F.; Silva, C.; Arruda, H.; Rodrigues, A. S.; Bruford, M.; Short, S.; Morgan, A. J.; Spurgeon, D.; Kille, P.; Cunha, L.
Show abstract
Earthworms thriving in naturally occurring geothermal soils offer rare insight into rapid adaptation to environmental extremes. Here, we show that the pantropical earthworm Amynthas gracilis survives and flourishes in soils of the Furnas Volcano (Sao Miguel Island, Azores), where conditions include elevated temperatures (up to 40 {degrees}C), high CO2 (88.6%), low O2 (10%), toxic metals, and mildly acidic pH. In a reciprocal-transplant, mesocosm-based experiment between soils overlying areas of active degassing volcanic gassing (hereafter active degassing soils) and reference soils, convergence of the epidermal thickness of the transplanted earthworms to the resident-soil phenotype (24 {+/-} 3.9 {micro}m active degassing soil, 43.8 {+/-} 8 {micro}m reference soil), was observed within 31 days. Combining RNA-Seq, DNA (5-cytosine) methylation mapping, and microRNA profiling, this phenotypic change results from coordinated transcriptional and epigenetic reprogramming. While gene-body methylation occurred at [~]98 % of loci, levels varied, and differentially methylated regions were enriched ffor genes with altered expression under volcanic stress. Multi-omics network analysis identified epithelial morphogenesis, circulatory system formation, and neural development as regulatory hubs, highlighted by a set of 41 epithelial-morphogenesis genes showing consistent methylation and miRNA patterns. Additional modules governing ion transport and signal transduction complemented the adaptive response. Collectively these findings demonstrate that A. gracilis employs dynamic DNA methylation and microRNA regulation alongside transcriptional reprogramming to generate a persistent phenotypic adjustment to a volcanic stress. This work advances our understanding of extremophile resilience and provides a scalable model for predicting organismal adaptive capacity in the face of environmental extremes.
Matching journals
The top 13 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Towards the biogeography of butyrate-producing bacteria 94%
- Diet of Andean leaf-eared mice (Phyllotis) living at extreme elevations on Atacama volcanoes: insights from metagenomics, DNA metabarcoding, and stable isotopes 94%
- Sampling The Zebrafish Gut Microbiota - A Genome Resolved Metagenomic Approach 93%
Similar papers in this journal
- Diversity of an uncommon elastic hypersaline microbial mat along a small-scale transect 93%
- Optimised biomolecular extraction for metagenomic analysis of microbial biofilms from high-mountain streams 93%
- Chemical patterns of colony membership and mother-offspring similarity in Antarctic fur seals are reproducible over time 91%
Similar papers in this journal
- Differential DNA methylation in Pacific oyster reproductive tissue in response to ocean acidification 92%
- Telomere-to-telomere assembly of the genome of an individual Oikopleura dioica from Okinawa using Nanopore-based sequencing 92%
- The genome of a vestimentiferan tubeworm (Ridgeia piscesae) provides insights into its adaptation to a deep-sea environment 91%
Similar papers in this journal
- Invertebrate methylomes provide insight into mechanisms of environmental tolerance and reveal methodological biases 94%
- Unlocking River Biofilm Microbial Diversity: A Comparative Analysis of Sequencing Technologies 93%
- Benchmarking long-read sequencing strategies for obtaining ASV-resolved rRNA operons from environmental microeukaryotes 93%
Similar papers in this journal
- Pollution-Driven Selection in Riparian Ecosystems: Genome-Wide Responses to Bacillus thuringiensis israelensis and Copper in a Non-biting Midge 94%
- Coral larvae suppress the heat stress response during the onset of symbiosis thereby decreasing their odds of survival 93%
- Global gene expression patterns in response to white patch syndrome: Disentangling symbiont loss from the thermal stress response in reef-building coral 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.