Out of Antarctica: new insights into Antarctic Subcluster 5.2 picocyanobacteria based on high-quality genomes
Benoit Durieu, B.; Savaglia, V.; Van Vlierberghe, M.; Lupo, V.; BAURAIN, D.; Wilmotte, A.; Cornet, L.
Show abstract
2.Synechococcus-like cyanobacteria are cosmopolitan unicellular picocyanobacteria that have colonized diverse aquatic and terrestrial habitats. The so-called subcluster 5.2 represents a particularly diversified subgroup, including marine and freshwater organisms adapted to extreme conditions, notably polar environments. We increased the genomic representation of polar taxa in this subcluster by reconstructing new high-quality genomes from five Antarctic lacustrine strains and one Arctic freshwater isolate using a combination of small Illumina and long Nanopore reads. A maximum likelihood (ML) phylogenomic analysis of these new assemblies combined with all publicly available good quality assemblies of the subcluster 5.2 suggests evidence of a dispersal process from Antarctica. Indeed, the topology of the phylogenomic tree indicates one basal Antarctic lineage followed by the emergence of two lineages, one Antarctic and one non-Antarctic (Spain). This finding is further supported by a 16S rRNA ML phylogenetic and a pangenomic analysis. Although secondary colonization of Antarctica by cyanobacteria following the cooling of the continent 34 million years ago has been reported, this study is the first to support an Out-of-Antarctica scenario inside subcluster 5.2. 3. Impact statementThis study provides novel insights into the evolutionary history and biogeography of Synechococcus-like picocyanobacteria. By expanding the genomic sampling of polar subcluster 5.2, we reveal that Antarctic taxa are not monophyletic and are intermixed with non-Antarctic lineages, suggesting an unprecedented Out-of-Antarctica dispersal scenario. Our results, supported by 16S rRNA, phylogenomic and pangenomic analyses, highlight the role of polar regions as both a refuge and a source of microbial diversity. This work advances our understanding of cyanobacterial adaptation, radiation and genome evolution in extreme environments. 4. Data summaryRaw sequencing reads and genome assemblies from this study have been deposited in the European Nucleotide Archive (ENA) under Project accession number PRJEB103944. Raw sequencing reads are available under accession numbers ERR15933635 to ERR15933638, ERR15933641 to ERR15933644, ERR15903357, ERR15903358, ERR15905256 and ERR15905257. The assemblies can be accessed under accession numbers GCA_977927515, GCA_977927525, GCA_977927535, GCA_977927545, GCA_977927555 and GCA_977929215. The scripts and code as well as large supplementary files generated during this study are available on Figshare and can be downloaded from https://doi.org/10.6084/m9.figshare.30772781 [1]. Supplementary data files are also provided and contains supplementary figures (Fig. S1-S4) and tables (Table S1-S6).
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Prevalence, complete genome and metabolic potentials of a phylogenetically novel cyanobacterial symbiont in the coral-killing sponge, Terpios hoshinota 95%
- A freshwater radiation of diplonemids 95%
- Metabolic potential and survival strategies of microbial communities across extreme temperature gradients on Deception Island volcano, Antarctica 94%
Similar papers in this journal
- Specialized Bacteroidetes dominate the Arctic Ocean during marine spring blooms 96%
- Exploring the microdiversity within marine bacterial taxa: Towards an integrated biogeography in the Southern Ocean 95%
- Detection of interphylum transfers of the magnetosome gene cluster in magnetotactic bacteria 95%
Similar papers in this journal
- Woeseiales transcriptional response in Arctic fjord surface sediment 93%
- Divergent gene expression responses in two Baltic Sea heterotrophic model bacteria to dinoflagellate dissolved organic matter 93%
- 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%
Similar papers in this journal
- Genomic analysis of Coccomyxa viridis, a common low-abundance alga associated with lichen symbioses 95%
- Linking extreme seasonality and gene expression in arctic marine protists 94%
- Next generation taxonomy: integrating traditional species description with the holobiont concept and genomic approaches - The in-depth characterization of a novel Euplotes species as a case study 93%
Similar papers in this journal
- Genomic and kinetic analysis of novel Nitrospinae enriched by cell sorting 95%
- Exploring the upper pH limits of nitrite oxidation: diversity, ecophysiology, and adaptive traits of haloalkalitolerant Nitrospira 95%
- Benchmarking metagenomic marine microbial growth prediction from codon usage bias and peak-to-trough ratios 95%
"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.