Abstract
How can we estimate the smallest number of genes sufficient for a unicellular organism to survive on a rich medium? One approach is to remove genes one at a time and count how many of such deletion strains are unable to grow. However, the single-gene knockout data are insufficient, because joint gene deletions may result in negative genetic interactions, also known as synthetic lethality. We used a technique from graph theory to estimate the size of minimal yeast genome from partial data on synthetic lethality. The number of potential synthetic lethal interactions grows very fast when multiple genes are deleted, revealing a paradoxical contrast with the experimental reductions of yeast genome by ~100 genes, and of bacterial genomes by several hundreds of genes.
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CITATION STYLE
Rahiminejad, S., De Sanctis, B., Pevzner, P., & Mushegian, A. (2024). Synthetic lethality and the minimal genome size problem. MSphere, 9(7). https://doi.org/10.1128/msphere.00139-24
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