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  5. Plastic responses to past environments shape adaptation to novel selection pressures.

Plastic responses to past environments shape adaptation to novel selection pressures.

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Resource type
Journal article
Creator (person)
Coates, Sarah E. R.
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Comeault, Aaron A.
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Wood, Daniel P.
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Fay, Michael F.
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Creer, Simon
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Osborne, Owen G.
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Dunning, Luke T.
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Papadopulos, Alexander S. T.
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Date published
January 30, 2025
Abstract
Phenotypic plasticity may pave the way for rapid adaptation to newly encountered environments. Although it is often contested, there is growing evidence that initial plastic responses of ancestral populations to new environmental cues may promote subsequent adaptation. However, we do not know whether plasticity to cues present in the ancestral habitat (past-cue plasticity) can facilitate adaptation to novel cues. Conceivably, this could occur if plastic responses are coincidentally optimal to both past and novel cues (i.e., are preadaptive) or if they are transferred to novel cues during adaptation. Past plastic phenotype values could also become fixed during adaptation to the new environment. To uncover the role of past-cue plasticity in adaptation, we tested gene expression plasticity responses of two parallel mine-waste-adapted populations and their closest coastal relatives. Plants were exposed to the past and novel cues of salt and zinc, which revealed that during adaptation to mine waste, plasticity to salt diminishes. Despite this, our results show that ancestral plasticity to salt has a substantial impact on subsequent adaptation to zinc. For a third of genes that have evolved zinc plasticity in mine populations, salt plasticity has been transferred to the zinc response. Furthermore, a quarter of fixed expression differences between mine and coastal populations were similar to ancestral salt responses. Alongside evidence that ancestral plasticity to novel cues can facilitate adaptation, our results provide a clear indication that ancestral past-cue plasticity can also play a key role in rapid, parallel adaptation to novel habitats.
Project(s)
Priority 2: Trait Diversity and Function
Priority 1: Ecosystem Stewardship
Funder
Funder nameAwards
Natural Environment Research Council, United Kingdom
NE/R001081/1 - Envision Doctoral Training Program (NE/L002604/1) - Independent Research Fellowship (NE/T011025/1)
Journal title
Proceedings of the National Academy of Sciences
Volume
122
Issue
5
Article number
e2409541122
Publisher
National Academy of Sciences
Place of publication
Washington, D.C., U.S.
ISSN
0027-8424
eISSN
1091-6490
Date accepted
December 18, 2024
Official URL
https://doi.org/10.1073/pnas.2409541122
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by/4.0/
DOI
10.1073/pnas.2409541122
Keywords
Exaptation
Preadaptation
Gene expression
Adaptive potential
Additional information
IF = 12.779 (2023-2024)
Managed by the British Library and supported by the AHRC

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