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Syntenic Cell Wall QTLs as Versatile Breeding Tools: Intraspecific Allelic Variability and Predictability of Biomass Quality Loci in Target Plant Species

Syntenic cell wall QTLs (SQTLs) can identify genetic determinants of biomass traits in understudied species based on results from model crops. However, their effective use in plant breeding requires SQTLs to display intraspecific allelic variability and to predict causative loci in other populations...

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Autores principales: Pancaldi, Francesco, van Loo, Eibertus N., Senio, Sylwia, Al Hassan, Mohamad, van der Cruijsen, Kasper, Paulo, Maria-João, Dolstra, Oene, Schranz, M. Eric, Trindade, Luisa M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961111/
https://www.ncbi.nlm.nih.gov/pubmed/36840127
http://dx.doi.org/10.3390/plants12040779
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author Pancaldi, Francesco
van Loo, Eibertus N.
Senio, Sylwia
Al Hassan, Mohamad
van der Cruijsen, Kasper
Paulo, Maria-João
Dolstra, Oene
Schranz, M. Eric
Trindade, Luisa M.
author_facet Pancaldi, Francesco
van Loo, Eibertus N.
Senio, Sylwia
Al Hassan, Mohamad
van der Cruijsen, Kasper
Paulo, Maria-João
Dolstra, Oene
Schranz, M. Eric
Trindade, Luisa M.
author_sort Pancaldi, Francesco
collection PubMed
description Syntenic cell wall QTLs (SQTLs) can identify genetic determinants of biomass traits in understudied species based on results from model crops. However, their effective use in plant breeding requires SQTLs to display intraspecific allelic variability and to predict causative loci in other populations/species than the ones used for SQTLs identification. In this study, genome assemblies from different accessions of Arabidopsis, rapeseed, tomato, rice, Brachypodium and maize were used to evaluate the intraspecific variability of SQTLs. In parallel, a genome-wide association study (GWAS) on cell wall quality traits was performed in miscanthus to verify the colocalization between GWAS loci and miscanthus SQTLs. Finally, an analogous approach was applied on a set of switchgrass cell wall QTLs retrieved from the literature. These analyses revealed large SQTLs intraspecific genetic variability, ranging from presence–absence gene variation to SNPs/INDELs and changes in coded proteins. Cell wall genes displaying gene dosage regulation, such as PAL and CAD, displayed presence–absence variation in Brachypodium and rapeseed, while protein INDELs were detected for the Brachypodium homologs of the rice brittle culm-like 8 locus, which may likely impact cell wall quality. Furthermore, SQTLs significantly colocalized with the miscanthus and switchgrass QTLs, with relevant cell wall genes being retained in colocalizing regions. Overall, SQTLs are useful tools to screen germplasm for relevant genes and alleles to improve biomass quality and can increase the efficiency of plant breeding in understudied biomass crops.
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spelling pubmed-99611112023-02-26 Syntenic Cell Wall QTLs as Versatile Breeding Tools: Intraspecific Allelic Variability and Predictability of Biomass Quality Loci in Target Plant Species Pancaldi, Francesco van Loo, Eibertus N. Senio, Sylwia Al Hassan, Mohamad van der Cruijsen, Kasper Paulo, Maria-João Dolstra, Oene Schranz, M. Eric Trindade, Luisa M. Plants (Basel) Article Syntenic cell wall QTLs (SQTLs) can identify genetic determinants of biomass traits in understudied species based on results from model crops. However, their effective use in plant breeding requires SQTLs to display intraspecific allelic variability and to predict causative loci in other populations/species than the ones used for SQTLs identification. In this study, genome assemblies from different accessions of Arabidopsis, rapeseed, tomato, rice, Brachypodium and maize were used to evaluate the intraspecific variability of SQTLs. In parallel, a genome-wide association study (GWAS) on cell wall quality traits was performed in miscanthus to verify the colocalization between GWAS loci and miscanthus SQTLs. Finally, an analogous approach was applied on a set of switchgrass cell wall QTLs retrieved from the literature. These analyses revealed large SQTLs intraspecific genetic variability, ranging from presence–absence gene variation to SNPs/INDELs and changes in coded proteins. Cell wall genes displaying gene dosage regulation, such as PAL and CAD, displayed presence–absence variation in Brachypodium and rapeseed, while protein INDELs were detected for the Brachypodium homologs of the rice brittle culm-like 8 locus, which may likely impact cell wall quality. Furthermore, SQTLs significantly colocalized with the miscanthus and switchgrass QTLs, with relevant cell wall genes being retained in colocalizing regions. Overall, SQTLs are useful tools to screen germplasm for relevant genes and alleles to improve biomass quality and can increase the efficiency of plant breeding in understudied biomass crops. MDPI 2023-02-09 /pmc/articles/PMC9961111/ /pubmed/36840127 http://dx.doi.org/10.3390/plants12040779 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pancaldi, Francesco
van Loo, Eibertus N.
Senio, Sylwia
Al Hassan, Mohamad
van der Cruijsen, Kasper
Paulo, Maria-João
Dolstra, Oene
Schranz, M. Eric
Trindade, Luisa M.
Syntenic Cell Wall QTLs as Versatile Breeding Tools: Intraspecific Allelic Variability and Predictability of Biomass Quality Loci in Target Plant Species
title Syntenic Cell Wall QTLs as Versatile Breeding Tools: Intraspecific Allelic Variability and Predictability of Biomass Quality Loci in Target Plant Species
title_full Syntenic Cell Wall QTLs as Versatile Breeding Tools: Intraspecific Allelic Variability and Predictability of Biomass Quality Loci in Target Plant Species
title_fullStr Syntenic Cell Wall QTLs as Versatile Breeding Tools: Intraspecific Allelic Variability and Predictability of Biomass Quality Loci in Target Plant Species
title_full_unstemmed Syntenic Cell Wall QTLs as Versatile Breeding Tools: Intraspecific Allelic Variability and Predictability of Biomass Quality Loci in Target Plant Species
title_short Syntenic Cell Wall QTLs as Versatile Breeding Tools: Intraspecific Allelic Variability and Predictability of Biomass Quality Loci in Target Plant Species
title_sort syntenic cell wall qtls as versatile breeding tools: intraspecific allelic variability and predictability of biomass quality loci in target plant species
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961111/
https://www.ncbi.nlm.nih.gov/pubmed/36840127
http://dx.doi.org/10.3390/plants12040779
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