Evolution of cross-tolerance to metals in yeast.
Name
bazzicalupo-et-al-2025-evolution-of-cross-tolerance-to-metals-in-yeast.pdf
Description
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Size
3.25 MB
Format
Adobe PDF
Checksum (CRC64NVME)
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Resource type
Journal article
Date published
September 16, 2025
Abstract
Organisms often face multiple selective pressures simultaneously (e.g., mine tailings with multiple heavy metal contaminants), yet we know little about when adaptation to one stressor provides cross-tolerance or cross-intolerance to other stressors. To explore the potential for cross-tolerance, we adapted to high concentrations of six single metals in a short-term evolutionary rescue experiment. We then measured cross-tolerance of each metal-adapted line to the other five metals. We tested three predictors for the degree of cross-tolerance, based on similarity in 1) the physiochemical properties of each metal pair, 2) the overlap in genes known to impact tolerance to both metals, and 3) their co-occurrence in the environment. None of these predictors explained significant variation in cross-tolerance. Instead, the strongest predictor was the metal in which adaptation occurred: Cobalt-adapted lines performed well in most metals (generalists) while manganese-adapted lines typically performed poorly (specialists). To determine the genetic basis, we sequenced the genomes of 109 metal-adapted lines. Broader cross-tolerance characterized lines bearing mutations affecting phosphorus metabolism, with three genes related to phosphate metabolism bearing several independent mutations ( , , ). Thus, while a genome-wide analysis failed to predict cross-tolerance, a subset of genes facilitated growth in multiple metals. We also observed two “mutator” lines (both in manganese) and report evidence that cadmium, cobalt, and manganese altered the mutation spectrum. While it is challenging to predict how evolutionary adaptation to one stressor will impact tolerance to other stresses, our work helps reveal the environments and pathways that contribute to cross-tolerance among metals.
Project(s)
Priority 2: Trait Diversity and Function
Funder
| Funder name | Awards |
Natural Sciences and Engineering Research Council of Canada, Canada | Discovery Grant to S.P.O. (RGPIN-2022-03726) |
Journal title
Proceedings of the National Academy of Sciences
Volume
122
Issue
37
Article number
e2505337122
Publisher
Proceedings of the National Academy of Sciences
Place of publication
Washington, D.C., U.S.
ISSN
0027-8424
eISSN
1091-6490
Date accepted
August 7, 2025
Official URL
Rights statement
Additional information
IF = 9.1 (2024)