Physical dormancy release in Medicago truncatula seeds is related to environmental variations

Seed dormancy and timing of its release is an important developmental transition determining the survival of individuals, populations, and species in variable environments. Medicago truncatula was used as a model to study physical seed dormancy at the ecological and genetics level. The effect of alt...

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Autores principales: Renzi Pugni, Juan Pablo, Duchoslav, Martin, Brus, Jan, Hradilová, Iveta, Pechanec, Vilém, Václavek, Tadeás, Machalová, Jitka, Hron, Karel, Verdiel, Jerome, Smýkal, Petr
Formato: Artículo
Lenguaje:Inglés
Publicado: MDPI 2025
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Acceso en línea:http://hdl.handle.net/20.500.12123/22866
https://www.mdpi.com/2223-7747/9/4/503
https://doi.org/10.3390/plants9040503
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author Renzi Pugni, Juan Pablo
Duchoslav, Martin
Brus, Jan
Hradilová, Iveta
Pechanec, Vilém
Václavek, Tadeás
Machalová, Jitka
Hron, Karel
Verdiel, Jerome
Smýkal, Petr
author_browse Brus, Jan
Duchoslav, Martin
Hradilová, Iveta
Hron, Karel
Machalová, Jitka
Pechanec, Vilém
Renzi Pugni, Juan Pablo
Smýkal, Petr
Verdiel, Jerome
Václavek, Tadeás
author_facet Renzi Pugni, Juan Pablo
Duchoslav, Martin
Brus, Jan
Hradilová, Iveta
Pechanec, Vilém
Václavek, Tadeás
Machalová, Jitka
Hron, Karel
Verdiel, Jerome
Smýkal, Petr
author_sort Renzi Pugni, Juan Pablo
collection INTA Digital
description Seed dormancy and timing of its release is an important developmental transition determining the survival of individuals, populations, and species in variable environments. Medicago truncatula was used as a model to study physical seed dormancy at the ecological and genetics level. The effect of alternating temperatures, as one of the causes releasing physical seed dormancy, was tested in 178 M. truncatula accessions over three years. Several coefficients of dormancy release were related to environmental variables. Dormancy varied greatly (4–100%) across accessions as well as year of experiment. We observed overall higher physical dormancy release under more alternating temperatures (35/15 °C) in comparison with less alternating ones (25/15 °C). Accessions from more arid climates released dormancy under higher experimental temperature alternations more than accessions originating from less arid environments. The plasticity of physical dormancy can probably distribute the germination through the year and act as a bet-hedging strategy in arid environments. On the other hand, a slight increase in physical dormancy was observed in accessions from environments with higher among-season temperature variation. Genome-wide association analysis identified 136 candidate genes related to secondary metabolite synthesis, hormone regulation, and modification of the cell wall. The activity of these genes might mediate seed coat permeability and, ultimately, imbibition and germination.
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institution Instituto Nacional de Tecnología Agropecuaria (INTA -Argentina)
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spelling INTA228662025-07-02T14:34:13Z Physical dormancy release in Medicago truncatula seeds is related to environmental variations Renzi Pugni, Juan Pablo Duchoslav, Martin Brus, Jan Hradilová, Iveta Pechanec, Vilém Václavek, Tadeás Machalová, Jitka Hron, Karel Verdiel, Jerome Smýkal, Petr Association Mapping Germination Genomics Legumes Plasticity Seed Dormancy Mapeo de Asociación Germinación Genómica Leguiminosas Medicago truncatula Plasticidad Dormancia de Semillas Climate Adaptation Physical Dormancy Adaptación Climática Letargo Físico Seed dormancy and timing of its release is an important developmental transition determining the survival of individuals, populations, and species in variable environments. Medicago truncatula was used as a model to study physical seed dormancy at the ecological and genetics level. The effect of alternating temperatures, as one of the causes releasing physical seed dormancy, was tested in 178 M. truncatula accessions over three years. Several coefficients of dormancy release were related to environmental variables. Dormancy varied greatly (4–100%) across accessions as well as year of experiment. We observed overall higher physical dormancy release under more alternating temperatures (35/15 °C) in comparison with less alternating ones (25/15 °C). Accessions from more arid climates released dormancy under higher experimental temperature alternations more than accessions originating from less arid environments. The plasticity of physical dormancy can probably distribute the germination through the year and act as a bet-hedging strategy in arid environments. On the other hand, a slight increase in physical dormancy was observed in accessions from environments with higher among-season temperature variation. Genome-wide association analysis identified 136 candidate genes related to secondary metabolite synthesis, hormone regulation, and modification of the cell wall. The activity of these genes might mediate seed coat permeability and, ultimately, imbibition and germination. EEA Hilario Ascasubi Fil: Renzi Pugni, Juan Pablo. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Hilario Ascasubi; Argentina Fil: Duchoslav, Martin. Palacký University. Department of Botany; República Checa Fil: Brus, Jan. Palacký University. Department of Geoinformatics; República Checa Fil: Hradilová, Iveta. Palacký University. Department of Botany; República Checa Fil: Pecjanec, Vilém. Palacký University. Department of Geoinformatics; República Checa Fil: Václavek, Tadeás. Palacký University. Department of Mathematical Analysis and Applications of Mathematics; República Checa Fil: Machalová, Jitka. Palacký University. Department of Mathematical Analysis and Applications of Mathematics; República Checa Fil: Horn, Karel. Palacký University. Department of Mathematical Analysis and Applications of Mathematics; República Checa Fil: Verdiel, Jerome. Université d’Angers. Institut de Recherche en Horticulture et Semences (INRA); Francia Fil: Smýkal, Petr. Palacký University. Department of Botany; República Checa 2025-07-02T14:21:15Z 2025-07-02T14:21:15Z 2020-04 info:ar-repo/semantics/artículo info:eu-repo/semantics/article info:eu-repo/semantics/apublishedVersion http://hdl.handle.net/20.500.12123/22866 https://www.mdpi.com/2223-7747/9/4/503 2223-7747 https://doi.org/10.3390/plants9040503 eng info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by-nc-sa/4.0/ Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0) application/pdf MDPI Plants 9 (4) : 503 (2020)
spellingShingle Association Mapping
Germination
Genomics
Legumes
Plasticity
Seed Dormancy
Mapeo de Asociación
Germinación
Genómica
Leguiminosas
Medicago truncatula
Plasticidad
Dormancia de Semillas
Climate Adaptation
Physical Dormancy
Adaptación Climática
Letargo Físico
Renzi Pugni, Juan Pablo
Duchoslav, Martin
Brus, Jan
Hradilová, Iveta
Pechanec, Vilém
Václavek, Tadeás
Machalová, Jitka
Hron, Karel
Verdiel, Jerome
Smýkal, Petr
Physical dormancy release in Medicago truncatula seeds is related to environmental variations
title Physical dormancy release in Medicago truncatula seeds is related to environmental variations
title_full Physical dormancy release in Medicago truncatula seeds is related to environmental variations
title_fullStr Physical dormancy release in Medicago truncatula seeds is related to environmental variations
title_full_unstemmed Physical dormancy release in Medicago truncatula seeds is related to environmental variations
title_short Physical dormancy release in Medicago truncatula seeds is related to environmental variations
title_sort physical dormancy release in medicago truncatula seeds is related to environmental variations
topic Association Mapping
Germination
Genomics
Legumes
Plasticity
Seed Dormancy
Mapeo de Asociación
Germinación
Genómica
Leguiminosas
Medicago truncatula
Plasticidad
Dormancia de Semillas
Climate Adaptation
Physical Dormancy
Adaptación Climática
Letargo Físico
url http://hdl.handle.net/20.500.12123/22866
https://www.mdpi.com/2223-7747/9/4/503
https://doi.org/10.3390/plants9040503
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