Differential Functional Constraints Cause Strain-Level Endemism in Polynucleobacter Populations

Author:

Sangwan Naseer12,Zarraonaindia Iratxe1,Hampton-Marcell Jarrad T.12,Ssegane Herbert3,Eshoo Tifani W.1,Rijal Geeta4,Negri M. Cristina3,Gilbert Jack A.12

Affiliation:

1. Biosciences Division, Argonne National Laboratory, Lemont, Illinois, USA

2. Department of Surgery and Department of Ecology and Evolution, University of Chicago, Chicago, Illinois, USA

3. Energy Systems Division, Argonne National Laboratory, Lemont, Illinois, USA

4. Metropolitan Water Reclamation District of Greater Chicago, Cicero, Illinois, USA

Abstract

Understanding the biological factors influencing habitat-wide genetic endemism is important for explaining observed biogeographic patterns. Polynucleobacter is a genus of bacteria that seems to have found a way to colonize myriad freshwater ecosystems and by doing so has become one of the most abundant bacteria in these environments. We sequenced metagenomes from locations across the Chicago River system and assembled Polynucleobacter genomes from different sites and compared how the nucleotide composition, gene codon usage, and the ratio of synonymous (codes for the same amino acid) to nonsynonymous (codes for a different amino acid) mutations varied across these population genomes at each site. The environmental pressures at each site drove purifying selection for functional traits that maintained a streamlined core genome across the Chicago River Polynucleobacter population while allowing for site-specific genomic adaptation. These adaptations enable Polynucleobacter to become dominant across different riverine environmental gradients.

Publisher

American Society for Microbiology

Subject

Computer Science Applications,Genetics,Molecular Biology,Modelling and Simulation,Ecology, Evolution, Behavior and Systematics,Biochemistry,Physiology,Microbiology

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