Specialization in Molecular Functions and Secondary Metabolite Production Potential in Cyanobacterial Symbionts
Cameron, E. S.; Sanchez, S.; Goldman, N.; Blaxter, M.; Finn, R. D.
Show abstract
Cyanobacteria are globally occurring photosynthetic bacteria notable for their contribution to primary production and their production of toxins which have detrimental impacts on ecosystems. Beyond this, cyanobacteria can form mutualistic symbiotic relationships with a diverse set of eukaryotes, ranging from land plants to fungi. Nevertheless, not all cyanobacteria are found in symbiotic associations suggesting symbiotic cyanobacteria have evolved specializations that facilitate host-interactions. Photosynthetic capabilities, nitrogen fixation, and the production of complex biochemicals are key functions provided by host-associated cyanobacterial symbionts. To explore if additional specializations are associated with such lifestyles in cyanobacteria, we have conducted comparative phylogenomics of molecular functions and of biosynthetic gene clusters (BGCs) in 977 cyanobacterial genomes. Cyanobacteria with host-associated and symbiotic lifestyles were concentrated in the family Nostocaceae, where eight monophyletic clades correspond to specific host taxa. In agreement with previous studies, symbionts are likely to provide fixed nitrogen to their eukaryotic partners. Additionally, our analyses identified chitin metabolising pathways in cyanobacteria associated with specific host groups, while obligate symbionts had fewer BGCs. The conservation of molecular functions and BGCs between closely related symbiotic and free-living cyanobacteria suggests that there is the potential for additional cyanobacteria to form symbiotic relationships than is currently known.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Expanding the Egbenema Horizon: Novel Species Discovery in India and First Complete Genome Assembly of the Genus 94%
- Identification and Overexpression of Endogenous Transcription Factors to Enhance Lipid Accumulation in the Commercially Relevant Species Chlamydomonas pacifica 94%
- The bioreactor microbiome of mass cultivated marine diatoms for industrial carbon capture and utilization 92%
Similar papers in this journal
- Unravelling microalgal-bacterial interactions in aquatic ecosystems through 16S rRNA gene-based co-occurrence networks 95%
- Comprehensive Comparative Genomics Reveals Over 50 Phyla of Free-living and Pathogenic Bacteria are Associated with Diverse Members of the Amoebozoa 94%
- Adaptations of endolithic communities to abrupt environmental changes in a hyper-arid desert 94%
Similar papers in this journal
- A novel, N2-fixing cyanobacterium present and active in the global oceans 95%
- Genetic and phylogenetic analysis of dissimilatory iodate-reducing bacteria identifies potential niches across the world's oceans 95%
- Genome diversification in globally distributed novel marine Proteobacteria is linked to environmental adaptation 95%
Similar papers in this journal
- Distribution and diversity of dimetal-carboxylate halogenases in cyanobacteria 95%
- Transcriptomic stability or lability explains sensitivity to climate stressors in coralline algae 94%
- Comparative genomic analysis of a metagenome-assembled genome reveals distinctive symbiotic traits in a Mucoromycotina fine root endophyte arbuscular mycorrhizal fungus 93%
"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.