Structure-informed microbial population genetics elucidate selective pressures that shape protein evolution

dc.contributor.author Kiefl, Evan
dc.contributor.author Esen, Ozcan C.
dc.contributor.author Miller, Samuel E.
dc.contributor.author Kroll, Kourtney L.
dc.contributor.author Willis, Amy D.
dc.contributor.author Rappé, Michael S.
dc.contributor.author Pan, Tao
dc.contributor.author Eren, A. Murat
dc.date.accessioned 2023-09-27T20:20:23Z
dc.date.available 2023-09-27T20:20:23Z
dc.date.issued 2023-02-22
dc.description © The Author(s), 2023. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Kiefl, E., Esen, O., Miller, S., Kroll, K., Willis, A., Rappé, M., Pan, T., & Eren, A. Structure-informed microbial population genetics elucidate selective pressures that shape protein evolution. Science Advances, 9(8), (2023): eabq4632, https://doi.org/10.1126/sciadv.abq4632.
dc.description.abstract Comprehensive sampling of natural genetic diversity with metagenomics enables highly resolved insights into the interplay between ecology and evolution. However, resolving adaptive, neutral, or purifying processes of evolution from intrapopulation genomic variation remains a challenge, partly due to the sole reliance on gene sequences to interpret variants. Here, we describe an approach to analyze genetic variation in the context of predicted protein structures and apply it to a marine microbial population within the SAR11 subclade 1a.3.V, which dominates low-latitude surface oceans. Our analyses reveal a tight association between genetic variation and protein structure. In a central gene in nitrogen metabolism, we observe decreased occurrence of nonsynonymous variants from ligand-binding sites as a function of nitrate concentrations, revealing genetic targets of distinct evolutionary pressures maintained by nutrient availability. Our work yields insights into the governing principles of evolution and enables structure-aware investigations of microbial population genetics.
dc.description.sponsorship E.K. acknowledges support from the Natural Sciences and Engineering Research Council of Canada. A.D.W. acknowledges support from the National Institute of General Medical Sciences (R35 GM133420). The authors are thankful for the Open Access Publication Funds by Alfred Wegener Institute for Polar and Marine Research. This work was supported by Alfred P. Sloan Foundation Fellowship in Ocean Sciences to A.M.E. and by a Simons Foundation grant (#687269) to A.M.E.
dc.identifier.citation Kiefl, E., Esen, O., Miller, S., Kroll, K., Willis, A., Rappé, M., Pan, T., & Eren, A. (2023). Structure-informed microbial population genetics elucidate selective pressures that shape protein evolution. Science Advances, 9(8), eabq4632.
dc.identifier.doi 10.1126/sciadv.abq4632
dc.identifier.uri https://hdl.handle.net/1912/66925
dc.publisher American Association for the Advancement of Science
dc.relation.uri https://doi.org/10.1126/sciadv.abq4632
dc.rights Attribution-NonCommercial 4.0 International *
dc.rights.uri http://creativecommons.org/licenses/by-nc/4.0/ *
dc.title Structure-informed microbial population genetics elucidate selective pressures that shape protein evolution
dc.type Article
dspace.entity.type Publication
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