Rationalization of genes for resistance to Bremia lactucae in lettuce
Lettuce downy mildew caused by Bremia lactucae is the most important disease of lettuce worldwide. Breeding for resistance to this disease is a major priority for most lettuce breeding programs. Many genes and factors for resistance to B. lactucae have been reported by multiple researchers over the past ~50 years. Their nomenclature has not been coordinated, resulting in duplications and gaps in nominations. We have reviewed the available information and rationalized it into 51 resistance genes and factors and 15 quantitative trait loci along with supporting documentation as well as genetic and molecular information. This involved multiple rounds of consultation with many of the original authors. This paper provides the foundation for naming additional genes for resistance to B. lactucae in the future as well as for deploying genes to provide more durable resistance.
Main Authors: | , , , , , , , , , |
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Format: | Article/Letter to editor biblioteca |
Language: | English |
Subjects: | Dm gene, Lactuca spp., Lettuce downy mildew, Plant breeding, Quantitative trait locus, Resistance genes, |
Online Access: | https://research.wur.nl/en/publications/rationalization-of-genes-for-resistance-to-bremia-lactucae-in-let |
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dig-wur-nl-wurpubs-5038622024-12-04 Parra, Lorena Maisonneuve, Brigitte Lebeda, Ales Schut, Johan Christopoulou, Marilena Jeuken, Marieke McHale, Leah Truco, Maria Jose Crute, Ian Michelmore, Richard Article/Letter to editor Euphytica 210 (2016) 3 ISSN: 0014-2336 Rationalization of genes for resistance to Bremia lactucae in lettuce 2016 Lettuce downy mildew caused by Bremia lactucae is the most important disease of lettuce worldwide. Breeding for resistance to this disease is a major priority for most lettuce breeding programs. Many genes and factors for resistance to B. lactucae have been reported by multiple researchers over the past ~50 years. Their nomenclature has not been coordinated, resulting in duplications and gaps in nominations. We have reviewed the available information and rationalized it into 51 resistance genes and factors and 15 quantitative trait loci along with supporting documentation as well as genetic and molecular information. This involved multiple rounds of consultation with many of the original authors. This paper provides the foundation for naming additional genes for resistance to B. lactucae in the future as well as for deploying genes to provide more durable resistance. en application/pdf https://research.wur.nl/en/publications/rationalization-of-genes-for-resistance-to-bremia-lactucae-in-let 10.1007/s10681-016-1687-1 https://edepot.wur.nl/382297 Dm gene Lactuca spp. Lettuce downy mildew Plant breeding Quantitative trait locus Resistance genes https://creativecommons.org/licenses/by/4.0/ Wageningen University & Research |
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Dm gene Lactuca spp. Lettuce downy mildew Plant breeding Quantitative trait locus Resistance genes Dm gene Lactuca spp. Lettuce downy mildew Plant breeding Quantitative trait locus Resistance genes |
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Dm gene Lactuca spp. Lettuce downy mildew Plant breeding Quantitative trait locus Resistance genes Dm gene Lactuca spp. Lettuce downy mildew Plant breeding Quantitative trait locus Resistance genes Parra, Lorena Maisonneuve, Brigitte Lebeda, Ales Schut, Johan Christopoulou, Marilena Jeuken, Marieke McHale, Leah Truco, Maria Jose Crute, Ian Michelmore, Richard Rationalization of genes for resistance to Bremia lactucae in lettuce |
description |
Lettuce downy mildew caused by Bremia lactucae is the most important disease of lettuce worldwide. Breeding for resistance to this disease is a major priority for most lettuce breeding programs. Many genes and factors for resistance to B. lactucae have been reported by multiple researchers over the past ~50 years. Their nomenclature has not been coordinated, resulting in duplications and gaps in nominations. We have reviewed the available information and rationalized it into 51 resistance genes and factors and 15 quantitative trait loci along with supporting documentation as well as genetic and molecular information. This involved multiple rounds of consultation with many of the original authors. This paper provides the foundation for naming additional genes for resistance to B. lactucae in the future as well as for deploying genes to provide more durable resistance. |
format |
Article/Letter to editor |
topic_facet |
Dm gene Lactuca spp. Lettuce downy mildew Plant breeding Quantitative trait locus Resistance genes |
author |
Parra, Lorena Maisonneuve, Brigitte Lebeda, Ales Schut, Johan Christopoulou, Marilena Jeuken, Marieke McHale, Leah Truco, Maria Jose Crute, Ian Michelmore, Richard |
author_facet |
Parra, Lorena Maisonneuve, Brigitte Lebeda, Ales Schut, Johan Christopoulou, Marilena Jeuken, Marieke McHale, Leah Truco, Maria Jose Crute, Ian Michelmore, Richard |
author_sort |
Parra, Lorena |
title |
Rationalization of genes for resistance to Bremia lactucae in lettuce |
title_short |
Rationalization of genes for resistance to Bremia lactucae in lettuce |
title_full |
Rationalization of genes for resistance to Bremia lactucae in lettuce |
title_fullStr |
Rationalization of genes for resistance to Bremia lactucae in lettuce |
title_full_unstemmed |
Rationalization of genes for resistance to Bremia lactucae in lettuce |
title_sort |
rationalization of genes for resistance to bremia lactucae in lettuce |
url |
https://research.wur.nl/en/publications/rationalization-of-genes-for-resistance-to-bremia-lactucae-in-let |
work_keys_str_mv |
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_version_ |
1819147877722619904 |