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Genomic basis for drought resistance in European beech forests threatened by climate change

In the course of global climate change, Central Europe is experiencing more frequent and prolonged periods of drought. The drought years 2018 and 2019 affected European beeches (Fagus sylvatica L.) differently: even in the same stand, drought-damaged trees neighboured healthy trees, suggesting that...

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Autores principales: Pfenninger, Markus, Reuss, Friederike, Kiebler, Angelika, Schönnenbeck, Philipp, Caliendo, Cosima, Gerber, Susanne, Cocchiararo, Berardino, Reuter, Sabrina, Blüthgen, Nico, Mody, Karsten, Mishra, Bagdevi, Bálint, Miklós, Thines, Marco, Feldmeyer, Barbara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8266386/
https://www.ncbi.nlm.nih.gov/pubmed/34132196
http://dx.doi.org/10.7554/eLife.65532
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author Pfenninger, Markus
Reuss, Friederike
Kiebler, Angelika
Schönnenbeck, Philipp
Caliendo, Cosima
Gerber, Susanne
Cocchiararo, Berardino
Reuter, Sabrina
Blüthgen, Nico
Mody, Karsten
Mishra, Bagdevi
Bálint, Miklós
Thines, Marco
Feldmeyer, Barbara
author_facet Pfenninger, Markus
Reuss, Friederike
Kiebler, Angelika
Schönnenbeck, Philipp
Caliendo, Cosima
Gerber, Susanne
Cocchiararo, Berardino
Reuter, Sabrina
Blüthgen, Nico
Mody, Karsten
Mishra, Bagdevi
Bálint, Miklós
Thines, Marco
Feldmeyer, Barbara
author_sort Pfenninger, Markus
collection PubMed
description In the course of global climate change, Central Europe is experiencing more frequent and prolonged periods of drought. The drought years 2018 and 2019 affected European beeches (Fagus sylvatica L.) differently: even in the same stand, drought-damaged trees neighboured healthy trees, suggesting that the genotype rather than the environment was responsible for this conspicuous pattern. We used this natural experiment to study the genomic basis of drought resistance with Pool-GWAS. Contrasting the extreme phenotypes identified 106 significantly associated single-nucleotide polymorphisms (SNPs) throughout the genome. Most annotated genes with associated SNPs (>70%) were previously implicated in the drought reaction of plants. Non-synonymous substitutions led either to a functional amino acid exchange or premature termination. An SNP assay with 70 loci allowed predicting drought phenotype in 98.6% of a validation sample of 92 trees. Drought resistance in European beech is a moderately polygenic trait that should respond well to natural selection, selective management, and breeding.
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spelling pubmed-82663862021-07-12 Genomic basis for drought resistance in European beech forests threatened by climate change Pfenninger, Markus Reuss, Friederike Kiebler, Angelika Schönnenbeck, Philipp Caliendo, Cosima Gerber, Susanne Cocchiararo, Berardino Reuter, Sabrina Blüthgen, Nico Mody, Karsten Mishra, Bagdevi Bálint, Miklós Thines, Marco Feldmeyer, Barbara eLife Genetics and Genomics In the course of global climate change, Central Europe is experiencing more frequent and prolonged periods of drought. The drought years 2018 and 2019 affected European beeches (Fagus sylvatica L.) differently: even in the same stand, drought-damaged trees neighboured healthy trees, suggesting that the genotype rather than the environment was responsible for this conspicuous pattern. We used this natural experiment to study the genomic basis of drought resistance with Pool-GWAS. Contrasting the extreme phenotypes identified 106 significantly associated single-nucleotide polymorphisms (SNPs) throughout the genome. Most annotated genes with associated SNPs (>70%) were previously implicated in the drought reaction of plants. Non-synonymous substitutions led either to a functional amino acid exchange or premature termination. An SNP assay with 70 loci allowed predicting drought phenotype in 98.6% of a validation sample of 92 trees. Drought resistance in European beech is a moderately polygenic trait that should respond well to natural selection, selective management, and breeding. eLife Sciences Publications, Ltd 2021-06-16 /pmc/articles/PMC8266386/ /pubmed/34132196 http://dx.doi.org/10.7554/eLife.65532 Text en © 2021, Pfenninger et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Genetics and Genomics
Pfenninger, Markus
Reuss, Friederike
Kiebler, Angelika
Schönnenbeck, Philipp
Caliendo, Cosima
Gerber, Susanne
Cocchiararo, Berardino
Reuter, Sabrina
Blüthgen, Nico
Mody, Karsten
Mishra, Bagdevi
Bálint, Miklós
Thines, Marco
Feldmeyer, Barbara
Genomic basis for drought resistance in European beech forests threatened by climate change
title Genomic basis for drought resistance in European beech forests threatened by climate change
title_full Genomic basis for drought resistance in European beech forests threatened by climate change
title_fullStr Genomic basis for drought resistance in European beech forests threatened by climate change
title_full_unstemmed Genomic basis for drought resistance in European beech forests threatened by climate change
title_short Genomic basis for drought resistance in European beech forests threatened by climate change
title_sort genomic basis for drought resistance in european beech forests threatened by climate change
topic Genetics and Genomics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8266386/
https://www.ncbi.nlm.nih.gov/pubmed/34132196
http://dx.doi.org/10.7554/eLife.65532
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