Unveiling the Epigenomic Control of Temperature Acclimation in Marine Phytoplankton through Multiomics Integration
Arvanitidou, C.; Ramos-Gonzalez, M.; Garcia-Gomez, M. E.; Corellou, F.; Garcia-Gonzalez, M.; Romero-Campero, F. J.
Show abstract
Temperature plays a central role in marine phytoplankton biogeographical dynamics, physiology and gene expression. Nonetheless, the transcriptional regulatory mechanisms controlling temperature acclimation in marine phytoplankton are yet to be characterized. Ostreococcus tauri was chosen as a model species for green marine phytoplankton due to its cellular and genomic simplicity, as well as its evolutionary position within the green lineage. In this study, epigenomic and transcriptomic data were integrated to characterize changes induced by temperature in the trimethylation of histone 3 at lysines 27 and 4 (H3K27me3 and H3K4me3) epigenetic marks established by the Polycomb (PcG) and Trithorax group (TrxG) complexes, respectively. H3K27me3 was found to be a repressive mark responding to temperature, showing predominantly significant increased levels at high temperatures. While H3K4me3 was associated with active transcription, presenting less evident variations in cultures acclimated to different temperatures. H3K27me3 was found only marginally associated with transposable elements, being mostly involved in the repression of specific biological processes, such as gene expression control by transcription factors, meiosis, motors proteins and cytoskeletal structures. No significant conservation was found between the H3K27me3 gene targets in the model plant Arabidopsis thaliana and Ostreococcus tauri. Nonetheless, transcriptions factors belonging to the MADS-box, WRKY and AP2 families were consistently repressed by H3K27me3 in both species, unveiling that, although the specific downstream targets of this epigenetic mark have diversified during evolution, its role in modulating higher order regulatory nodes remains evolutionary conserved.
Matching journals
The top 11 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Transcriptomic stability or lability explains sensitivity to climate stressors in coralline algae 91%
- An INDEL genomic approach to explore population diversity of phytoplankton 91%
- Desiccation Does Not Drastically Increase the Accessibility of Foreign DNA to the Nuclear Genomes: Evidence from the Frequency of Endosymbiotic DNA Transfer 91%
Similar papers in this journal
- Linking extreme seasonality and gene expression in arctic marine protists 93%
- Grazing pressure-induced shift in planktonic bacterial communities with the dominance of acIII-A1 actinobacterial lineage in soda pans 93%
- Microbial signatures define the ecosystem functions of the pelagic microbiome in a basin-scale, Southwest Atlantic Ocean 92%
Similar papers in this journal
- Strong Purifying Selection Contributes to Genome Streamlining in Epipelagic Marinimicrobia 91%
- Positive and relaxed selective pressures have both strongly influenced the evolution of cryonotothenioid fishes during their radiation in the freezing Southern Ocean 91%
- A chromosome-level assembly and functional genomic resources for the model annelid Capitella teleta 91%
Similar papers in this journal
- Distinctive tasks of different cyanobacteria and associated bacteria in carbon as well as nitrogen fixation and cycling in a late stage Baltic Sea bloom 93%
- Heat stress disrupts early development and photosymbiosis in Cassiopea jellyfish 93%
- The complete mitochondrial genome of Calyptogena marissinica (Heterodonta: Veneroida: Vesicomyidae): insight into the deep-sea adaptive evolution of vesicomyids 92%
Similar papers in this journal
"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.