Metabolic trade-offs constrain the cell size ratio in a nitrogen-fixing symbiosis.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 38471501.
- Also identified by DOI 10.1016/j.cell.2024.02.016.
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Abstract
Biological dinitrogen (N<sub>2</sub>) fixation is a key metabolic process exclusively performed by prokaryotes, some of which are symbiotic with eukaryotes. Species of the marine haptophyte algae Braarudosphaera bigelowii harbor the N<sub>2</sub>-fixing endosymbiotic cyanobacteria UCYN-A, which might be evolving organelle-like characteristics. We found that the size ratio between UCYN-A and their hosts is strikingly conserved across sublineages/species, which is consistent with the size relationships of organelles in this symbiosis and other species. Metabolic modeling showed that this size relationship maximizes the coordinated growth rate based on trade-offs between resource acquisition and exchange. Our findings show that the size relationships of N<sub>2</sub>-fixing endosymbionts and organelles in unicellular eukaryotes are constrained by predictable metabolic underpinnings and that UCYN-A is, in many regards, functioning like a hypothetical N<sub>2</sub>-fixing organelle (or nitroplast).
Medical subject headings
- Cyanobacteria
- Haptophyta
- Nitrogen Fixation