Volta

Experimental mapping of bacterial fitness landscapes reveals eco-evolutionary fingerprints

Unknown authors · 2025
hash_id: 1638ca827959462ab8972879ed338c78343b7aae2a19a5c53e247b2c43bcf8d0 · DOI: 10.1038/s41598-025-17103-0

Understanding microbial dynamics in natural environments remains a significant challenge. As an alternative approach, studying model bacterial strains under well-defined laboratory conditions can reveal ecological niche patterns and evolutionary consequences in a controlled setting. Here, we evaluated bacterial growth dynamics to map fitness landscapes that may reflect natural processes experimentally. Six bacterial strains from a broad phylogenetic range were cultured individually across 195 distinct media, comprising 30 components, including both pure chemical compounds and natural ingredients. This approach generated 4,680 growth rate (r) and carrying capacity (K) pairs derived from growth curves spanning a broad range of nutritional conditions. Despite variations in growth profiles among strains, both positive and negative correlations in growth were observed across different media types. Notably, …

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References (5)

Growth dynamics of 3,909 Escherichia coli single-gene knockouts in rich and min… secondary
Culture-Based Assessment of Presumptive Resistant Bacterial Taxa in the Urban D… secondary
Time Series Data Mining for Linking the Shape of Bacterial Growth Curves to Bio… secondary
Interspecies interaction alters the trajectory of antibiotic resistance evoluti… secondary
Data-driven analysis reveals distinct genomic and environmental contributions t… secondary

Cited by (1)

Principles of experimental design for ecology and evolution primary