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Allelic Variants for Candidate Nitrogen Fixation Genes Revealed by Sequencing in Red Clover (Trifolium pratense L.)

Plant–rhizobia symbiosis can activate key genes involved in regulating nodulation associated with biological nitrogen fixation (BNF). Although the general molecular basis of the BNF process is frequently studied, little is known about its intraspecific variability and the characteristics of its alle...

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Autores principales: Trněný, Oldřich, Vlk, David, Macková, Eliška, Matoušková, Michaela, Řepková, Jana, Nedělník, Jan, Hofbauer, Jan, Vejražka, Karel, Jakešová, Hana, Jansa, Jan, Piálek, Lubomír, Knotová, Daniela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6862357/
https://www.ncbi.nlm.nih.gov/pubmed/31684086
http://dx.doi.org/10.3390/ijms20215470
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author Trněný, Oldřich
Vlk, David
Macková, Eliška
Matoušková, Michaela
Řepková, Jana
Nedělník, Jan
Hofbauer, Jan
Vejražka, Karel
Jakešová, Hana
Jansa, Jan
Piálek, Lubomír
Knotová, Daniela
author_facet Trněný, Oldřich
Vlk, David
Macková, Eliška
Matoušková, Michaela
Řepková, Jana
Nedělník, Jan
Hofbauer, Jan
Vejražka, Karel
Jakešová, Hana
Jansa, Jan
Piálek, Lubomír
Knotová, Daniela
author_sort Trněný, Oldřich
collection PubMed
description Plant–rhizobia symbiosis can activate key genes involved in regulating nodulation associated with biological nitrogen fixation (BNF). Although the general molecular basis of the BNF process is frequently studied, little is known about its intraspecific variability and the characteristics of its allelic variants. This study’s main goals were to describe phenotypic and genotypic variation in the context of nitrogen fixation in red clover (Trifolium pretense L.) and identify variants in BNF candidate genes associated with BNF efficiency. Acetylene reduction assay validation was the criterion for selecting individual plants with particular BNF rates. Sequences in 86 key candidate genes were obtained by hybridization-based sequence capture target enrichment of plants with alternative phenotypes for nitrogen fixation. Two genes associated with BNF were identified: ethylene response factor required for nodule differentiation (EFD) and molybdate transporter 1 (MOT1). In addition, whole-genome population genotyping by double-digest restriction-site-associated sequencing (ddRADseq) was performed, and BNF was evaluated by the natural (15)N abundance method. Polymorphisms associated with BNF and reflecting phenotype variability were identified. The genetic structure of plant accessions was not linked to BNF rate of measured plants. Knowledge of the genetic variation within BNF candidate genes and the characteristics of genetic variants will be beneficial in molecular diagnostics and breeding of red clover.
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spelling pubmed-68623572019-12-05 Allelic Variants for Candidate Nitrogen Fixation Genes Revealed by Sequencing in Red Clover (Trifolium pratense L.) Trněný, Oldřich Vlk, David Macková, Eliška Matoušková, Michaela Řepková, Jana Nedělník, Jan Hofbauer, Jan Vejražka, Karel Jakešová, Hana Jansa, Jan Piálek, Lubomír Knotová, Daniela Int J Mol Sci Article Plant–rhizobia symbiosis can activate key genes involved in regulating nodulation associated with biological nitrogen fixation (BNF). Although the general molecular basis of the BNF process is frequently studied, little is known about its intraspecific variability and the characteristics of its allelic variants. This study’s main goals were to describe phenotypic and genotypic variation in the context of nitrogen fixation in red clover (Trifolium pretense L.) and identify variants in BNF candidate genes associated with BNF efficiency. Acetylene reduction assay validation was the criterion for selecting individual plants with particular BNF rates. Sequences in 86 key candidate genes were obtained by hybridization-based sequence capture target enrichment of plants with alternative phenotypes for nitrogen fixation. Two genes associated with BNF were identified: ethylene response factor required for nodule differentiation (EFD) and molybdate transporter 1 (MOT1). In addition, whole-genome population genotyping by double-digest restriction-site-associated sequencing (ddRADseq) was performed, and BNF was evaluated by the natural (15)N abundance method. Polymorphisms associated with BNF and reflecting phenotype variability were identified. The genetic structure of plant accessions was not linked to BNF rate of measured plants. Knowledge of the genetic variation within BNF candidate genes and the characteristics of genetic variants will be beneficial in molecular diagnostics and breeding of red clover. MDPI 2019-11-02 /pmc/articles/PMC6862357/ /pubmed/31684086 http://dx.doi.org/10.3390/ijms20215470 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Trněný, Oldřich
Vlk, David
Macková, Eliška
Matoušková, Michaela
Řepková, Jana
Nedělník, Jan
Hofbauer, Jan
Vejražka, Karel
Jakešová, Hana
Jansa, Jan
Piálek, Lubomír
Knotová, Daniela
Allelic Variants for Candidate Nitrogen Fixation Genes Revealed by Sequencing in Red Clover (Trifolium pratense L.)
title Allelic Variants for Candidate Nitrogen Fixation Genes Revealed by Sequencing in Red Clover (Trifolium pratense L.)
title_full Allelic Variants for Candidate Nitrogen Fixation Genes Revealed by Sequencing in Red Clover (Trifolium pratense L.)
title_fullStr Allelic Variants for Candidate Nitrogen Fixation Genes Revealed by Sequencing in Red Clover (Trifolium pratense L.)
title_full_unstemmed Allelic Variants for Candidate Nitrogen Fixation Genes Revealed by Sequencing in Red Clover (Trifolium pratense L.)
title_short Allelic Variants for Candidate Nitrogen Fixation Genes Revealed by Sequencing in Red Clover (Trifolium pratense L.)
title_sort allelic variants for candidate nitrogen fixation genes revealed by sequencing in red clover (trifolium pratense l.)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6862357/
https://www.ncbi.nlm.nih.gov/pubmed/31684086
http://dx.doi.org/10.3390/ijms20215470
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