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Fruit Morphology and Ripening-Related QTLs in a Newly Developed Introgression Line Collection of the Elite Varieties ‘Védrantais’ and ‘Piel de Sapo’

Melon is an economically important crop with widely diverse fruit morphology and ripening characteristics. Its diploid sequenced genome and multiple genomic tools make this species suitable to study the genetic architecture of fruit traits. With the development of this introgression line population...

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Autores principales: Santo Domingo, Miguel, Mayobre, Carlos, Pereira, Lara, Argyris, Jason, Valverde, Laura, Martín-Hernández, Ana Montserrat, Garcia-Mas, Jordi, Pujol, Marta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694011/
https://www.ncbi.nlm.nih.gov/pubmed/36432848
http://dx.doi.org/10.3390/plants11223120
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author Santo Domingo, Miguel
Mayobre, Carlos
Pereira, Lara
Argyris, Jason
Valverde, Laura
Martín-Hernández, Ana Montserrat
Garcia-Mas, Jordi
Pujol, Marta
author_facet Santo Domingo, Miguel
Mayobre, Carlos
Pereira, Lara
Argyris, Jason
Valverde, Laura
Martín-Hernández, Ana Montserrat
Garcia-Mas, Jordi
Pujol, Marta
author_sort Santo Domingo, Miguel
collection PubMed
description Melon is an economically important crop with widely diverse fruit morphology and ripening characteristics. Its diploid sequenced genome and multiple genomic tools make this species suitable to study the genetic architecture of fruit traits. With the development of this introgression line population of the elite varieties ‘Piel de Sapo’ and ‘Védrantais’, we present a powerful tool to study fruit morphology and ripening traits that can also facilitate characterization or pyramidation of QTLs in inodorous melon types. The population consists of 36 lines covering almost 98% of the melon genome, with an average of three introgressions per chromosome and segregating for multiple fruit traits: morphology, ripening and quality. High variability in fruit morphology was found within the population, with 24 QTLs affecting six different traits, confirming previously reported QTLs and two newly detected QTLs, FLQW5.1 and FWQW7.1. We detected 20 QTLs affecting fruit ripening traits, six of them reported for the first time, two affecting the timing of yellowing of the rind (EYELLQW1.1 and EYELLQW8.1) and four at the end of chromosome 8 affecting aroma, abscission and harvest date (EAROQW8.3, EALFQW8.3, ABSQW8.3 and HARQW8.3). We also confirmed the location of several QTLs, such as fruit-quality-related QTLs affecting rind and flesh appearance and flesh firmness.
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spelling pubmed-96940112022-11-26 Fruit Morphology and Ripening-Related QTLs in a Newly Developed Introgression Line Collection of the Elite Varieties ‘Védrantais’ and ‘Piel de Sapo’ Santo Domingo, Miguel Mayobre, Carlos Pereira, Lara Argyris, Jason Valverde, Laura Martín-Hernández, Ana Montserrat Garcia-Mas, Jordi Pujol, Marta Plants (Basel) Article Melon is an economically important crop with widely diverse fruit morphology and ripening characteristics. Its diploid sequenced genome and multiple genomic tools make this species suitable to study the genetic architecture of fruit traits. With the development of this introgression line population of the elite varieties ‘Piel de Sapo’ and ‘Védrantais’, we present a powerful tool to study fruit morphology and ripening traits that can also facilitate characterization or pyramidation of QTLs in inodorous melon types. The population consists of 36 lines covering almost 98% of the melon genome, with an average of three introgressions per chromosome and segregating for multiple fruit traits: morphology, ripening and quality. High variability in fruit morphology was found within the population, with 24 QTLs affecting six different traits, confirming previously reported QTLs and two newly detected QTLs, FLQW5.1 and FWQW7.1. We detected 20 QTLs affecting fruit ripening traits, six of them reported for the first time, two affecting the timing of yellowing of the rind (EYELLQW1.1 and EYELLQW8.1) and four at the end of chromosome 8 affecting aroma, abscission and harvest date (EAROQW8.3, EALFQW8.3, ABSQW8.3 and HARQW8.3). We also confirmed the location of several QTLs, such as fruit-quality-related QTLs affecting rind and flesh appearance and flesh firmness. MDPI 2022-11-15 /pmc/articles/PMC9694011/ /pubmed/36432848 http://dx.doi.org/10.3390/plants11223120 Text en © 2022 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
Santo Domingo, Miguel
Mayobre, Carlos
Pereira, Lara
Argyris, Jason
Valverde, Laura
Martín-Hernández, Ana Montserrat
Garcia-Mas, Jordi
Pujol, Marta
Fruit Morphology and Ripening-Related QTLs in a Newly Developed Introgression Line Collection of the Elite Varieties ‘Védrantais’ and ‘Piel de Sapo’
title Fruit Morphology and Ripening-Related QTLs in a Newly Developed Introgression Line Collection of the Elite Varieties ‘Védrantais’ and ‘Piel de Sapo’
title_full Fruit Morphology and Ripening-Related QTLs in a Newly Developed Introgression Line Collection of the Elite Varieties ‘Védrantais’ and ‘Piel de Sapo’
title_fullStr Fruit Morphology and Ripening-Related QTLs in a Newly Developed Introgression Line Collection of the Elite Varieties ‘Védrantais’ and ‘Piel de Sapo’
title_full_unstemmed Fruit Morphology and Ripening-Related QTLs in a Newly Developed Introgression Line Collection of the Elite Varieties ‘Védrantais’ and ‘Piel de Sapo’
title_short Fruit Morphology and Ripening-Related QTLs in a Newly Developed Introgression Line Collection of the Elite Varieties ‘Védrantais’ and ‘Piel de Sapo’
title_sort fruit morphology and ripening-related qtls in a newly developed introgression line collection of the elite varieties ‘védrantais’ and ‘piel de sapo’
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694011/
https://www.ncbi.nlm.nih.gov/pubmed/36432848
http://dx.doi.org/10.3390/plants11223120
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