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Association mapping in Salix viminalis L. (Salicaceae) – identification of candidate genes associated with growth and phenology

Willow species (Salix) are important as short‐rotation biomass crops for bioenergy, which creates a demand for faster genetic improvement and breeding through deployment of molecular marker‐assisted selection (MAS). To find markers associated with important adaptive traits, such as growth and phenol...

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Autores principales: Hallingbäck, Henrik R., Fogelqvist, Johan, Powers, Stephen J., Turrion‐Gomez, Juan, Rossiter, Rachel, Amey, Joanna, Martin, Tom, Weih, Martin, Gyllenstrand, Niclas, Karp, Angela, Lagercrantz, Ulf, Hanley, Steven J., Berlin, Sofia, Rönnberg‐Wästljung, Ann‐Christin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4973673/
https://www.ncbi.nlm.nih.gov/pubmed/27547245
http://dx.doi.org/10.1111/gcbb.12280
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author Hallingbäck, Henrik R.
Fogelqvist, Johan
Powers, Stephen J.
Turrion‐Gomez, Juan
Rossiter, Rachel
Amey, Joanna
Martin, Tom
Weih, Martin
Gyllenstrand, Niclas
Karp, Angela
Lagercrantz, Ulf
Hanley, Steven J.
Berlin, Sofia
Rönnberg‐Wästljung, Ann‐Christin
author_facet Hallingbäck, Henrik R.
Fogelqvist, Johan
Powers, Stephen J.
Turrion‐Gomez, Juan
Rossiter, Rachel
Amey, Joanna
Martin, Tom
Weih, Martin
Gyllenstrand, Niclas
Karp, Angela
Lagercrantz, Ulf
Hanley, Steven J.
Berlin, Sofia
Rönnberg‐Wästljung, Ann‐Christin
author_sort Hallingbäck, Henrik R.
collection PubMed
description Willow species (Salix) are important as short‐rotation biomass crops for bioenergy, which creates a demand for faster genetic improvement and breeding through deployment of molecular marker‐assisted selection (MAS). To find markers associated with important adaptive traits, such as growth and phenology, for use in MAS, we genetically dissected the trait variation of a Salix viminalis (L.) population of 323 accessions. The accessions were sampled throughout northern Europe and were established at two field sites in Pustnäs, Sweden, and at Woburn, UK, offering the opportunity to assess the impact of genotype‐by‐environment interactions (G × E) on trait–marker associations. Field measurements were recorded for growth and phenology traits. The accessions were genotyped using 1536 SNP markers developed from phenology candidate genes and from genes previously observed to be differentially expressed in contrasting environments. Association mapping between 1233 of these SNPs and the measured traits was performed taking into account population structure and threshold selection bias. At a false discovery rate (FDR) of 0.2, 29 SNPs were associated with bud burst, leaf senescence, number of shoots or shoot diameter. The percentage of accession variation ([Formula: see text]) explained by these associations ranged from 0.3% to 4.4%, suggesting that the studied traits are controlled by many loci of limited individual impact. Despite this, a SNP in the EARLY FLOWERING 3 gene was repeatedly associated (FDR < 0.2) with bud burst. The rare homozygous genotype exhibited 0.4–1.0 lower bud burst scores than the other genotype classes on a five‐grade scale. Consequently, this marker could be promising for use in MAS and the gene deserves further study. Otherwise, associations were less consistent across sites, likely due to their small [Formula: see text] estimates and to considerable G × E interactions indicated by multivariate association analyses and modest trait accession correlations across sites (0.32–0.61).
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spelling pubmed-49736732016-08-17 Association mapping in Salix viminalis L. (Salicaceae) – identification of candidate genes associated with growth and phenology Hallingbäck, Henrik R. Fogelqvist, Johan Powers, Stephen J. Turrion‐Gomez, Juan Rossiter, Rachel Amey, Joanna Martin, Tom Weih, Martin Gyllenstrand, Niclas Karp, Angela Lagercrantz, Ulf Hanley, Steven J. Berlin, Sofia Rönnberg‐Wästljung, Ann‐Christin Glob Change Biol Bioenergy Original Research Articles Willow species (Salix) are important as short‐rotation biomass crops for bioenergy, which creates a demand for faster genetic improvement and breeding through deployment of molecular marker‐assisted selection (MAS). To find markers associated with important adaptive traits, such as growth and phenology, for use in MAS, we genetically dissected the trait variation of a Salix viminalis (L.) population of 323 accessions. The accessions were sampled throughout northern Europe and were established at two field sites in Pustnäs, Sweden, and at Woburn, UK, offering the opportunity to assess the impact of genotype‐by‐environment interactions (G × E) on trait–marker associations. Field measurements were recorded for growth and phenology traits. The accessions were genotyped using 1536 SNP markers developed from phenology candidate genes and from genes previously observed to be differentially expressed in contrasting environments. Association mapping between 1233 of these SNPs and the measured traits was performed taking into account population structure and threshold selection bias. At a false discovery rate (FDR) of 0.2, 29 SNPs were associated with bud burst, leaf senescence, number of shoots or shoot diameter. The percentage of accession variation ([Formula: see text]) explained by these associations ranged from 0.3% to 4.4%, suggesting that the studied traits are controlled by many loci of limited individual impact. Despite this, a SNP in the EARLY FLOWERING 3 gene was repeatedly associated (FDR < 0.2) with bud burst. The rare homozygous genotype exhibited 0.4–1.0 lower bud burst scores than the other genotype classes on a five‐grade scale. Consequently, this marker could be promising for use in MAS and the gene deserves further study. Otherwise, associations were less consistent across sites, likely due to their small [Formula: see text] estimates and to considerable G × E interactions indicated by multivariate association analyses and modest trait accession correlations across sites (0.32–0.61). John Wiley and Sons Inc. 2015-07-29 2016-05 /pmc/articles/PMC4973673/ /pubmed/27547245 http://dx.doi.org/10.1111/gcbb.12280 Text en © 2015 The Authors. Global Change Biology Bioenergy published John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research Articles
Hallingbäck, Henrik R.
Fogelqvist, Johan
Powers, Stephen J.
Turrion‐Gomez, Juan
Rossiter, Rachel
Amey, Joanna
Martin, Tom
Weih, Martin
Gyllenstrand, Niclas
Karp, Angela
Lagercrantz, Ulf
Hanley, Steven J.
Berlin, Sofia
Rönnberg‐Wästljung, Ann‐Christin
Association mapping in Salix viminalis L. (Salicaceae) – identification of candidate genes associated with growth and phenology
title Association mapping in Salix viminalis L. (Salicaceae) – identification of candidate genes associated with growth and phenology
title_full Association mapping in Salix viminalis L. (Salicaceae) – identification of candidate genes associated with growth and phenology
title_fullStr Association mapping in Salix viminalis L. (Salicaceae) – identification of candidate genes associated with growth and phenology
title_full_unstemmed Association mapping in Salix viminalis L. (Salicaceae) – identification of candidate genes associated with growth and phenology
title_short Association mapping in Salix viminalis L. (Salicaceae) – identification of candidate genes associated with growth and phenology
title_sort association mapping in salix viminalis l. (salicaceae) – identification of candidate genes associated with growth and phenology
topic Original Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4973673/
https://www.ncbi.nlm.nih.gov/pubmed/27547245
http://dx.doi.org/10.1111/gcbb.12280
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