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Updated: Jun 23, 2026

Biophysical Characterization of Flagellar Motor Functions
Published on: January 18, 2017
The last bacterial common ancestor encoded a complex flagellum.
The last bacterial common ancestor had a complex, 52-gene flagellum, not a simpler one. This finding suggests many modern bacterial flagella evolved through gene loss, not just gene gain.
Area of Science:
- Microbiology
- Evolutionary Biology
- Genomics
Background:
- Bacterial flagella are essential rotary nanomachines for motility.
- Previously, only 24 flagellar genes were thought to be conserved across bacteria.
- This raised questions about the complexity of the ancestral bacterial flagellum.
Purpose of the Study:
- To reconstruct the ancestral complexity of bacterial flagellar systems.
- To determine if the last bacterial common ancestor had a simple or complex flagellum.
- To investigate the evolutionary history of flagellar genes.
Main Methods:
- Large-scale profile- and sequence-based searches across bacterial genomes.
- Analysis of conserved sequence signatures and gene-tree clustering.
- Examination of flagellar gene-neighborhood evidence.
Main Results:
- Identified 28 additional flagellar gene families originating before major bacterial diversification.
- Reconstructed a 52-gene ancestral flagellum, including all essential components.
- Found evidence that many extant bacterial flagella resulted from lineage-specific gene loss.
Conclusions:
- The last bacterial common ancestor possessed a highly complex flagellar system.
- The ancestral flagellum was not genetically minimal, contrary to previous notions.
- Evolutionary models of early bacterial motility require revision based on these findings.
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