Cargando…
Spring Is Coming: Genetic Analyses of the Bud Break Date Locus Reveal Candidate Genes From the Cold Perception Pathway to Dormancy Release in Apple (Malus × domestica Borkh.)
Chilling requirement (CR) for bud dormancy completion determines the time of bud break in apple (Malus × domestica Borkh.). The molecular control of bud dormancy is highly heritable, suggesting a strong genetic control of the trait. An available Infinium II SNP platform for genotyping containing 8,7...
Autores principales: | , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2019
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6423911/ https://www.ncbi.nlm.nih.gov/pubmed/30930909 http://dx.doi.org/10.3389/fpls.2019.00033 |
_version_ | 1783404614789365760 |
---|---|
author | Miotto, Yohanna Evelyn Tessele, Carolina Czermainski, Ana Beatriz Costa Porto, Diogo Denardi Falavigna, Vítor da Silveira Sartor, Tiago Cattani, Amanda Malvessi Delatorre, Carla Andrea de Alencar, Sérgio Amorim da Silva-Junior, Orzenil Bonfim Togawa, Roberto Coiti Costa, Marcos Mota do Carmo Pappas, Georgios Joannis Grynberg, Priscila de Oliveira, Paulo Ricardo Dias Kvitschal, Marcus Vinícius Denardi, Frederico Buffon, Vanessa Revers, Luís Fernando |
author_facet | Miotto, Yohanna Evelyn Tessele, Carolina Czermainski, Ana Beatriz Costa Porto, Diogo Denardi Falavigna, Vítor da Silveira Sartor, Tiago Cattani, Amanda Malvessi Delatorre, Carla Andrea de Alencar, Sérgio Amorim da Silva-Junior, Orzenil Bonfim Togawa, Roberto Coiti Costa, Marcos Mota do Carmo Pappas, Georgios Joannis Grynberg, Priscila de Oliveira, Paulo Ricardo Dias Kvitschal, Marcus Vinícius Denardi, Frederico Buffon, Vanessa Revers, Luís Fernando |
author_sort | Miotto, Yohanna Evelyn |
collection | PubMed |
description | Chilling requirement (CR) for bud dormancy completion determines the time of bud break in apple (Malus × domestica Borkh.). The molecular control of bud dormancy is highly heritable, suggesting a strong genetic control of the trait. An available Infinium II SNP platform for genotyping containing 8,788 single nucleotide polymorphic markers was employed, and linkage maps were constructed in a F(1) cross from the low CR M13/91 and the moderate CR cv. Fred Hough. These maps were used to identify quantitative trait loci (QTL) for bud break date as a trait related to dormancy release. A major QTL for bud break was detected at the beginning of linkage group 9 (LG9). This QTL remained stable during seven seasons in two different growing sites. To increase mapping efficiency in detecting contributing genes underlying this QTL, 182 additional SNP markers located at the locus for bud break were used. Combining linkage mapping and structural characterization of the region, the high proportion of the phenotypic variance in the trait explained by the QTL is related to the coincident positioning of Arabidopsis orthologs for ICE1, FLC, and PRE1 protein-coding genes. The proximity of these genes from the most explanatory markers of this QTL for bud break suggests potential genetic additive effects, reinforcing the hypothesis of inter-dependent mechanisms controlling dormancy induction and release in apple trees. |
format | Online Article Text |
id | pubmed-6423911 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-64239112019-03-29 Spring Is Coming: Genetic Analyses of the Bud Break Date Locus Reveal Candidate Genes From the Cold Perception Pathway to Dormancy Release in Apple (Malus × domestica Borkh.) Miotto, Yohanna Evelyn Tessele, Carolina Czermainski, Ana Beatriz Costa Porto, Diogo Denardi Falavigna, Vítor da Silveira Sartor, Tiago Cattani, Amanda Malvessi Delatorre, Carla Andrea de Alencar, Sérgio Amorim da Silva-Junior, Orzenil Bonfim Togawa, Roberto Coiti Costa, Marcos Mota do Carmo Pappas, Georgios Joannis Grynberg, Priscila de Oliveira, Paulo Ricardo Dias Kvitschal, Marcus Vinícius Denardi, Frederico Buffon, Vanessa Revers, Luís Fernando Front Plant Sci Plant Science Chilling requirement (CR) for bud dormancy completion determines the time of bud break in apple (Malus × domestica Borkh.). The molecular control of bud dormancy is highly heritable, suggesting a strong genetic control of the trait. An available Infinium II SNP platform for genotyping containing 8,788 single nucleotide polymorphic markers was employed, and linkage maps were constructed in a F(1) cross from the low CR M13/91 and the moderate CR cv. Fred Hough. These maps were used to identify quantitative trait loci (QTL) for bud break date as a trait related to dormancy release. A major QTL for bud break was detected at the beginning of linkage group 9 (LG9). This QTL remained stable during seven seasons in two different growing sites. To increase mapping efficiency in detecting contributing genes underlying this QTL, 182 additional SNP markers located at the locus for bud break were used. Combining linkage mapping and structural characterization of the region, the high proportion of the phenotypic variance in the trait explained by the QTL is related to the coincident positioning of Arabidopsis orthologs for ICE1, FLC, and PRE1 protein-coding genes. The proximity of these genes from the most explanatory markers of this QTL for bud break suggests potential genetic additive effects, reinforcing the hypothesis of inter-dependent mechanisms controlling dormancy induction and release in apple trees. Frontiers Media S.A. 2019-03-07 /pmc/articles/PMC6423911/ /pubmed/30930909 http://dx.doi.org/10.3389/fpls.2019.00033 Text en Copyright © 2019 Miotto, Tessele, Czermainski, Porto, Falavigna, Sartor, Cattani, Delatorre, de Alencar, da Silva-Junior, Togawa, Costa, Pappas, Grynberg, de Oliveira, Kvitschal, Denardi, Buffon and Revers. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Plant Science Miotto, Yohanna Evelyn Tessele, Carolina Czermainski, Ana Beatriz Costa Porto, Diogo Denardi Falavigna, Vítor da Silveira Sartor, Tiago Cattani, Amanda Malvessi Delatorre, Carla Andrea de Alencar, Sérgio Amorim da Silva-Junior, Orzenil Bonfim Togawa, Roberto Coiti Costa, Marcos Mota do Carmo Pappas, Georgios Joannis Grynberg, Priscila de Oliveira, Paulo Ricardo Dias Kvitschal, Marcus Vinícius Denardi, Frederico Buffon, Vanessa Revers, Luís Fernando Spring Is Coming: Genetic Analyses of the Bud Break Date Locus Reveal Candidate Genes From the Cold Perception Pathway to Dormancy Release in Apple (Malus × domestica Borkh.) |
title | Spring Is Coming: Genetic Analyses of the Bud Break Date Locus Reveal Candidate Genes From the Cold Perception Pathway to Dormancy Release in Apple (Malus × domestica Borkh.) |
title_full | Spring Is Coming: Genetic Analyses of the Bud Break Date Locus Reveal Candidate Genes From the Cold Perception Pathway to Dormancy Release in Apple (Malus × domestica Borkh.) |
title_fullStr | Spring Is Coming: Genetic Analyses of the Bud Break Date Locus Reveal Candidate Genes From the Cold Perception Pathway to Dormancy Release in Apple (Malus × domestica Borkh.) |
title_full_unstemmed | Spring Is Coming: Genetic Analyses of the Bud Break Date Locus Reveal Candidate Genes From the Cold Perception Pathway to Dormancy Release in Apple (Malus × domestica Borkh.) |
title_short | Spring Is Coming: Genetic Analyses of the Bud Break Date Locus Reveal Candidate Genes From the Cold Perception Pathway to Dormancy Release in Apple (Malus × domestica Borkh.) |
title_sort | spring is coming: genetic analyses of the bud break date locus reveal candidate genes from the cold perception pathway to dormancy release in apple (malus × domestica borkh.) |
topic | Plant Science |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6423911/ https://www.ncbi.nlm.nih.gov/pubmed/30930909 http://dx.doi.org/10.3389/fpls.2019.00033 |
work_keys_str_mv | AT miottoyohannaevelyn springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT tesselecarolina springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT czermainskianabeatrizcosta springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT portodiogodenardi springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT falavignavitordasilveira springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT sartortiago springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT cattaniamandamalvessi springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT delatorrecarlaandrea springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT dealencarsergioamorim springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT dasilvajuniororzenilbonfim springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT togawarobertocoiti springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT costamarcosmotadocarmo springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT pappasgeorgiosjoannis springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT grynbergpriscila springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT deoliveirapauloricardodias springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT kvitschalmarcusvinicius springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT denardifrederico springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT buffonvanessa springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh AT reversluisfernando springiscominggeneticanalysesofthebudbreakdatelocusrevealcandidategenesfromthecoldperceptionpathwaytodormancyreleaseinapplemalusdomesticaborkh |