Pseudogenes in plasmid genomes reveal past transitions in plasmid mobility
Hanke, D. M.; Wang, Y.; Dagan, T.
Show abstract
Evidence for gene non-functionalization due to mutational processes is found in genomes in the form of pseudogenes. Pseudogenes are known to be rare in prokaryote chromosomes, with the exception of lineages that underwent an extreme genome reduction (e.g., obligatory symbionts). Much less is known about the frequency of pseudogenes in prokaryotic plasmids; those are genetic elements that can transfer between cells and may encode beneficial traits for their host. Non-functionalization of plasmid-encoded genes may alter the plasmid characteristics, e.g., mobility, or their effect on the host. Analyzing 10, 832 prokaryotic genomes, we find that plasmid genomes are characterized by threefold-higher pseudogene density compared to chromosomes. The majority of plasmid pseudogenes correspond to deteriorated transposable elements. A detailed analysis of enterobacterial plasmids furthermore reveals frequent gene non-functionalization events associated with the loss of plasmid self-transmissibility. Reconstructing the evolution of closely related plasmids reveals that non-functionalization of the conjugation machinery led to the emergence of non-mobilizable plasmid types. Examples are virulence plasmids in Escherichia and Salmonella. Our study highlights non-functionalization of core plasmid mobility functions as one route for the evolution of domesticated plasmids. Pseudogenes in plasmids supply insights into past transitions in plasmid mobility that are akin to transitions in bacterial lifestyle.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Antimicrobial resistance level and conjugation permissiveness shape plasmid distribution in clinical enterobacteria 97%
- Genetic dominance governs the evolution and spread of mobile genetic elements in bacteria 96%
- Host-specific plasmid evolution explains the variable spread of clinical antibiotic-resistance plasmids 95%
Similar papers in this journal
- Bacteria have numerous phage-plasmid families with conserved phage and variable plasmid gene repertoires. 97%
- Towards solving the conundrum of plasmid mobility: networks of functional dependencies shape plasmid transfer 96%
- The pathway to resolve dimeric forms distinguishes plasmids from megaplasmids in Enterobacteriaceae 96%
Similar papers in this journal
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.