Analysis of Natural Allelic Variation Controlling Arabidopsis thaliana Seed Germinability in Response to Cold and Dark: Identification of Three Major Quantitative Trait Loci

Light and temperature are key external factors in the control of Arabidopsis thaliana seed germination and dormancy mechanisms. Perception and response to these stimuli have to ensure that seedling emergence and growth occur at the most advantageous time for correct establishment. Analysis of over 3...

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Published in:Molecular plant Vol. 1; no. 1; pp. 145 - 154
Main Authors: Meng, Ping-Hong, Macquet, Audrey, Loudet, Olivier, Marion-Poll, Annie, North, Helen M.
Format: Journal Article
Language:English
Published: England Elsevier Inc 01-01-2008
Oxford University Press
Cell Press/Oxford UP
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Abstract Light and temperature are key external factors in the control of Arabidopsis thaliana seed germination and dormancy mechanisms. Perception and response to these stimuli have to ensure that seedling emergence and growth occur at the most advantageous time for correct establishment. Analysis of over 300 Arabidopsis accessions identified 14, from 12 different geographical locations, that were able to germinate to greater than 20% at 6°C in the dark. This natural variation was exploited to identify genetic loci responsible for cold-tolerant, dark germination. A quantitative trait loci approach was used on recombinant inbred line progeny of a cross between Bay-0 and Shahdara. Six distinct quantitative trait loci were identified, three of which were major loci, each responsible for 17–25% of the phenotypic variability in this trait. Parental phenotypes indicated that the majority of the cold-tolerant, dark-germination characteristics are related to light responses. Validation of the three major loci using heterogeneous inbred families confirmed the feasibility of fine mapping and cloning the genes at the quantitative trait loci responsible for cold-tolerant, dark germination.
AbstractList Light and temperature are key external factors in the control of Arabidopsis thaliana seed germination and dormancy mechanisms. Perception and response to these stimuli have to ensure that seedling emergence and growth occur at the most advantageous time for correct establishment. Analysis of over 300 Arabidopsis accessions identified 14, from 12 different geographical locations, that were able to germinate to greater than 20% at 6 degrees C in the dark. This natural variation was exploited to identify genetic loci responsible for cold-tolerant, dark germination. A quantitative trait loci approach was used on recombinant inbred line progeny of a cross between Bay-0 and Shahdara. Six distinct quantitative trait loci were identified, three of which were major loci, each responsible for 17-25% of the phenotypic variability in this trait. Parental phenotypes indicated that the majority of the cold-tolerant, dark-germination characteristics are related to light responses. Validation of the three major loci using heterogeneous inbred families confirmed the feasibility of fine mapping and cloning the genes at the quantitative trait loci responsible for cold-tolerant, dark germination.
Light and temperature are key external factors in the control of Arabidopsis thaliana seed germination and dormancy mechanisms. Perception and response to these stimuli have to ensure that seedling emergence and growth occur at the most advantageous time for correct establishment. Analysis of over 300 Arabidopsis accessions identified 14, from 12 different geographical locations, that were able to germinate to greater than 20% at 6°C in the dark. This natural variation was exploited to identify genetic loci responsible for cold-tolerant, dark germination. A quantitative trait loci approach was used on recombinant inbred line progeny of a cross between Bay-0 and Shahdara. Six distinct quantitative trait loci were identified, three of which were major loci, each responsible for 17–25% of the phenotypic variability in this trait. Parental phenotypes indicated that the majority of the cold-tolerant, dark-germination characteristics are related to light responses. Validation of the three major loci using heterogeneous inbred families confirmed the feasibility of fine mapping and cloning the genes at the quantitative trait loci responsible for cold-tolerant, dark germination.
Author Macquet, Audrey
Loudet, Olivier
Marion-Poll, Annie
Meng, Ping-Hong
North, Helen M.
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  givenname: Olivier
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  givenname: Annie
  surname: Marion-Poll
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  email: helen.north@versailles.inra.fr
  organization: Laboratoire de Biologie des Semences, UMR 204, INRA, AgroParisTech, Institut Jean-Pierre Bourgin, F-78026 Versailles Cedex, France
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Snippet Light and temperature are key external factors in the control of Arabidopsis thaliana seed germination and dormancy mechanisms. Perception and response to...
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SubjectTerms Arabidopsis - genetics
Arabidopsis - physiology
Arabidopsis - radiation effects
Cold Temperature
Darkness
France
Genetic Variation
Geography
Germination - radiation effects
Homozygote
Life Sciences
Light
Phenotype
Quantitative Trait Loci - genetics
Quantitative Trait Loci - radiation effects
Signal Transduction - radiation effects
Temperature
Title Analysis of Natural Allelic Variation Controlling Arabidopsis thaliana Seed Germinability in Response to Cold and Dark: Identification of Three Major Quantitative Trait Loci
URI https://dx.doi.org/10.1093/mp/ssm014
https://www.ncbi.nlm.nih.gov/pubmed/20031921
https://search.proquest.com/docview/733802029
https://hal.inrae.fr/hal-04176796
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