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A genotype × environment experiment reveals contrasting response strategies to drought between populations of a keystone species (Artemisia tridentata; Asteraceae)

Western North America has been experiencing persistent drought exacerbated by climate change for over two decades. This extreme climate event is a clear threat to native plant communities. Artemisia tridentata is a keystone shrub species in western North America and is threatened by climate change,...

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Autores principales: Melton, Anthony E., Moran, Kara, Martinez, Peggy, Ellestad, Paige, Milliken, Erin, Morales, Walker, Child, Andrew W., Richardson, Bryce A., Serpe, Marcelo, Novak, Stephen J., Buerki, Sven
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10423975/
https://www.ncbi.nlm.nih.gov/pubmed/37583876
http://dx.doi.org/10.1002/pei3.10119
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author Melton, Anthony E.
Moran, Kara
Martinez, Peggy
Ellestad, Paige
Milliken, Erin
Morales, Walker
Child, Andrew W.
Richardson, Bryce A.
Serpe, Marcelo
Novak, Stephen J.
Buerki, Sven
author_facet Melton, Anthony E.
Moran, Kara
Martinez, Peggy
Ellestad, Paige
Milliken, Erin
Morales, Walker
Child, Andrew W.
Richardson, Bryce A.
Serpe, Marcelo
Novak, Stephen J.
Buerki, Sven
author_sort Melton, Anthony E.
collection PubMed
description Western North America has been experiencing persistent drought exacerbated by climate change for over two decades. This extreme climate event is a clear threat to native plant communities. Artemisia tridentata is a keystone shrub species in western North America and is threatened by climate change, urbanization, and wildfire. A drought Genotype × Environment (G × E) experiment was conducted to assess phenotypic plasticity and differential gene expression in A. tridentata. The G × E experiment was performed on diploid A. tridentata seedlings from two populations (one from Idaho, USA and one from Utah, USA), which experience differing levels of drought stress during the summer months. Photosynthetic data, leaf temperature, and gene expression levels were compared between treatments and populations. The Utah population maintained higher photosynthetic rates and photosynthetic efficiency than the Idaho population under drought stress. The Utah population also exhibited far greater transcriptional plasticity than the Idaho population and expressed genes of response pathways distinct from those of the Idaho population. Populations of A. tridentata differ greatly in their drought response pathways, likely due to differences in response pathways that have evolved under distinct climatic regimes. Epigenetic processes likely contribute to the observed differences between the populations.
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spelling pubmed-104239752023-08-15 A genotype × environment experiment reveals contrasting response strategies to drought between populations of a keystone species (Artemisia tridentata; Asteraceae) Melton, Anthony E. Moran, Kara Martinez, Peggy Ellestad, Paige Milliken, Erin Morales, Walker Child, Andrew W. Richardson, Bryce A. Serpe, Marcelo Novak, Stephen J. Buerki, Sven Plant Environ Interact Research Articles Western North America has been experiencing persistent drought exacerbated by climate change for over two decades. This extreme climate event is a clear threat to native plant communities. Artemisia tridentata is a keystone shrub species in western North America and is threatened by climate change, urbanization, and wildfire. A drought Genotype × Environment (G × E) experiment was conducted to assess phenotypic plasticity and differential gene expression in A. tridentata. The G × E experiment was performed on diploid A. tridentata seedlings from two populations (one from Idaho, USA and one from Utah, USA), which experience differing levels of drought stress during the summer months. Photosynthetic data, leaf temperature, and gene expression levels were compared between treatments and populations. The Utah population maintained higher photosynthetic rates and photosynthetic efficiency than the Idaho population under drought stress. The Utah population also exhibited far greater transcriptional plasticity than the Idaho population and expressed genes of response pathways distinct from those of the Idaho population. Populations of A. tridentata differ greatly in their drought response pathways, likely due to differences in response pathways that have evolved under distinct climatic regimes. Epigenetic processes likely contribute to the observed differences between the populations. John Wiley and Sons Inc. 2023-07-24 /pmc/articles/PMC10423975/ /pubmed/37583876 http://dx.doi.org/10.1002/pei3.10119 Text en © 2023 The Authors. Plant‐Environment Interactions published by New Phytologist Foundation and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Melton, Anthony E.
Moran, Kara
Martinez, Peggy
Ellestad, Paige
Milliken, Erin
Morales, Walker
Child, Andrew W.
Richardson, Bryce A.
Serpe, Marcelo
Novak, Stephen J.
Buerki, Sven
A genotype × environment experiment reveals contrasting response strategies to drought between populations of a keystone species (Artemisia tridentata; Asteraceae)
title A genotype × environment experiment reveals contrasting response strategies to drought between populations of a keystone species (Artemisia tridentata; Asteraceae)
title_full A genotype × environment experiment reveals contrasting response strategies to drought between populations of a keystone species (Artemisia tridentata; Asteraceae)
title_fullStr A genotype × environment experiment reveals contrasting response strategies to drought between populations of a keystone species (Artemisia tridentata; Asteraceae)
title_full_unstemmed A genotype × environment experiment reveals contrasting response strategies to drought between populations of a keystone species (Artemisia tridentata; Asteraceae)
title_short A genotype × environment experiment reveals contrasting response strategies to drought between populations of a keystone species (Artemisia tridentata; Asteraceae)
title_sort genotype × environment experiment reveals contrasting response strategies to drought between populations of a keystone species (artemisia tridentata; asteraceae)
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10423975/
https://www.ncbi.nlm.nih.gov/pubmed/37583876
http://dx.doi.org/10.1002/pei3.10119
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