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Positive Selection during Niche Adaptation Results in Large-Scale and Irreversible Rearrangement of Chromosomal Gene Order in Bacteria
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Biochemistry and Microbiology.ORCID iD: 0000-0003-3033-9219
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Biochemistry and Microbiology.ORCID iD: 0000-0001-8457-7699
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Biochemistry and Microbiology.ORCID iD: 0000-0001-9974-578x
Uppsala University, Disciplinary Domain of Science and Technology, Biology, Department of Cell and Molecular Biology. Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Biochemistry and Microbiology.ORCID iD: 0000-0002-7456-9182
2022 (English)In: Molecular biology and evolution, ISSN 0737-4038, E-ISSN 1537-1719, Vol. 39, no 4, article id msac069Article in journal (Refereed) Published
Abstract [en]

Analysis of bacterial genomes shows that, whereas diverse species share many genes in common, their linear order on the chromosome is often not conserved. Whereas rearrangements in gene order could occur by genetic drift, an alternative hypothesis is rearrangement driven by positive selection during niche adaptation (SNAP). Here, we provide the first experimental support for the SNAP hypothesis. We evolved Salmonella to adapt to growth on malate as the sole carbon source and followed the evolutionary trajectories. The initial adaptation to growth in the new environment involved the duplication of 1.66 Mb, corresponding to one-third of the Salmonella chromosome. This duplication is selected to increase the copy number of a single gene, dctA, involved in the uptake of malate. Continuing selection led to the rapid loss or mutation of duplicate genes from either copy of the duplicated region. After 2000 generations, only 31% of the originally duplicated genes remained intact and the gene order within the Salmonella chromosome has been significantly and irreversibly altered. These results experientially validate predictions made by the SNAP hypothesis and show that SNAP can be a strong driving force for rearrangements in chromosomal gene order.

Place, publisher, year, edition, pages
Oxford University Press (OUP) Oxford University Press, 2022. Vol. 39, no 4, article id msac069
Keywords [en]
experimental evolution, chromosome rearrangements, Salmonella Typhimurium, SNAP hypothesis
National Category
Genetics and Genomics Evolutionary Biology
Identifiers
URN: urn:nbn:se:uu:diva-473953DOI: 10.1093/molbev/msac069ISI: 000783650600002PubMedID: 35348727OAI: oai:DiVA.org:uu-473953DiVA, id: diva2:1656693
Funder
Swedish Research Council, 2017-03953Swedish Research Council, 2021-04814Available from: 2022-05-06 Created: 2022-05-06 Last updated: 2025-02-01Bibliographically approved

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Cao, ShaBrandis, GerritHuseby, Douglas LHughes, Diarmaid

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