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Fine mapping and identification of a candidate gene for a major locus controlling maturity date in peach

BACKGROUND: Maturity date (MD) is a crucial factor for marketing of fresh fruit, especially those with limited shelf-life such as peach (Prunus persica L. Batsch): selection of several cultivars with differing MD would be advantageous to cover and extend the marketing season. Aims of this work were...

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Autores principales: Pirona, Raul, Eduardo, Iban, Pacheco, Igor, Da Silva Linge, Cassia, Miculan, Mara, Verde, Ignazio, Tartarini, Stefano, Dondini, Luca, Pea, Giorgio, Bassi, Daniele, Rossini, Laura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3854093/
https://www.ncbi.nlm.nih.gov/pubmed/24148786
http://dx.doi.org/10.1186/1471-2229-13-166
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author Pirona, Raul
Eduardo, Iban
Pacheco, Igor
Da Silva Linge, Cassia
Miculan, Mara
Verde, Ignazio
Tartarini, Stefano
Dondini, Luca
Pea, Giorgio
Bassi, Daniele
Rossini, Laura
author_facet Pirona, Raul
Eduardo, Iban
Pacheco, Igor
Da Silva Linge, Cassia
Miculan, Mara
Verde, Ignazio
Tartarini, Stefano
Dondini, Luca
Pea, Giorgio
Bassi, Daniele
Rossini, Laura
author_sort Pirona, Raul
collection PubMed
description BACKGROUND: Maturity date (MD) is a crucial factor for marketing of fresh fruit, especially those with limited shelf-life such as peach (Prunus persica L. Batsch): selection of several cultivars with differing MD would be advantageous to cover and extend the marketing season. Aims of this work were the fine mapping and identification of candidate genes for the major maturity date locus previously identified on peach linkage group 4. To improve genetic resolution of the target locus two F(2) populations derived from the crosses Contender x Ambra (CxA, 306 individuals) and PI91459 (NJ Weeping) x Bounty (WxBy, 103 individuals) were genotyped with the Sequenom and 9K Illumina Peach Chip SNP platforms, respectively. RESULTS: Recombinant individuals from the WxBy F(2) population allowed the localisation of maturity date locus to a 220 kb region of the peach genome. Among the 25 annotated genes within this interval, functional classification identified ppa007577m and ppa008301m as the most likely candidates, both encoding transcription factors of the NAC (NAM/ATAF1, 2/CUC2) family. Re-sequencing of the four parents and comparison with the reference genome sequence uncovered a deletion of 232 bp in the upstream region of ppa007577m that is homozygous in NJ Weeping and heterozygous in Ambra, Bounty and the WxBy F(1) parent. However, this variation did not segregate in the CxA F(2) population being the CxA F(1) parent homozygous for the reference allele. The second gene was thus examined as a candidate for maturity date. Re-sequencing of ppa008301m, showed an in-frame insertion of 9 bp in the last exon that co-segregated with the maturity date locus in both CxA and WxBy F(2) populations. CONCLUSIONS: Using two different segregating populations, the map position of the maturity date locus was refined from 3.56 Mb to 220 kb. A sequence variant in the NAC gene ppa008301m was shown to co-segregate with the maturity date locus, suggesting this gene as a candidate controlling ripening time in peach. If confirmed on other genetic materials, this variant may be used for marker-assisted breeding of new cultivars with differing maturity date.
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spelling pubmed-38540932013-12-07 Fine mapping and identification of a candidate gene for a major locus controlling maturity date in peach Pirona, Raul Eduardo, Iban Pacheco, Igor Da Silva Linge, Cassia Miculan, Mara Verde, Ignazio Tartarini, Stefano Dondini, Luca Pea, Giorgio Bassi, Daniele Rossini, Laura BMC Plant Biol Research Article BACKGROUND: Maturity date (MD) is a crucial factor for marketing of fresh fruit, especially those with limited shelf-life such as peach (Prunus persica L. Batsch): selection of several cultivars with differing MD would be advantageous to cover and extend the marketing season. Aims of this work were the fine mapping and identification of candidate genes for the major maturity date locus previously identified on peach linkage group 4. To improve genetic resolution of the target locus two F(2) populations derived from the crosses Contender x Ambra (CxA, 306 individuals) and PI91459 (NJ Weeping) x Bounty (WxBy, 103 individuals) were genotyped with the Sequenom and 9K Illumina Peach Chip SNP platforms, respectively. RESULTS: Recombinant individuals from the WxBy F(2) population allowed the localisation of maturity date locus to a 220 kb region of the peach genome. Among the 25 annotated genes within this interval, functional classification identified ppa007577m and ppa008301m as the most likely candidates, both encoding transcription factors of the NAC (NAM/ATAF1, 2/CUC2) family. Re-sequencing of the four parents and comparison with the reference genome sequence uncovered a deletion of 232 bp in the upstream region of ppa007577m that is homozygous in NJ Weeping and heterozygous in Ambra, Bounty and the WxBy F(1) parent. However, this variation did not segregate in the CxA F(2) population being the CxA F(1) parent homozygous for the reference allele. The second gene was thus examined as a candidate for maturity date. Re-sequencing of ppa008301m, showed an in-frame insertion of 9 bp in the last exon that co-segregated with the maturity date locus in both CxA and WxBy F(2) populations. CONCLUSIONS: Using two different segregating populations, the map position of the maturity date locus was refined from 3.56 Mb to 220 kb. A sequence variant in the NAC gene ppa008301m was shown to co-segregate with the maturity date locus, suggesting this gene as a candidate controlling ripening time in peach. If confirmed on other genetic materials, this variant may be used for marker-assisted breeding of new cultivars with differing maturity date. BioMed Central 2013-10-22 /pmc/articles/PMC3854093/ /pubmed/24148786 http://dx.doi.org/10.1186/1471-2229-13-166 Text en Copyright © 2013 Pirona et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Pirona, Raul
Eduardo, Iban
Pacheco, Igor
Da Silva Linge, Cassia
Miculan, Mara
Verde, Ignazio
Tartarini, Stefano
Dondini, Luca
Pea, Giorgio
Bassi, Daniele
Rossini, Laura
Fine mapping and identification of a candidate gene for a major locus controlling maturity date in peach
title Fine mapping and identification of a candidate gene for a major locus controlling maturity date in peach
title_full Fine mapping and identification of a candidate gene for a major locus controlling maturity date in peach
title_fullStr Fine mapping and identification of a candidate gene for a major locus controlling maturity date in peach
title_full_unstemmed Fine mapping and identification of a candidate gene for a major locus controlling maturity date in peach
title_short Fine mapping and identification of a candidate gene for a major locus controlling maturity date in peach
title_sort fine mapping and identification of a candidate gene for a major locus controlling maturity date in peach
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3854093/
https://www.ncbi.nlm.nih.gov/pubmed/24148786
http://dx.doi.org/10.1186/1471-2229-13-166
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