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Elucidation of the genetic architecture of self‐incompatibility in olive: Evolutionary consequences and perspectives for orchard management

The olive (Olea europaea L.) is a typical important perennial crop species for which the genetic determination and even functionality of self‐incompatibility (SI) are still largely unresolved. It is still not known whether SI is under gametophytic or sporophytic genetic control, yet fruit production...

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Autores principales: Saumitou‐Laprade, Pierre, Vernet, Philippe, Vekemans, Xavier, Billiard, Sylvain, Gallina, Sophie, Essalouh, Laila, Mhaïs, Ali, Moukhli, Abdelmajid, El Bakkali, Ahmed, Barcaccia, Gianni, Alagna, Fiammetta, Mariotti, Roberto, Cultrera, Nicolò G. M., Pandolfi, Saverio, Rossi, Martina, Khadari, Bouchaïb, Baldoni, Luciana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5680433/
https://www.ncbi.nlm.nih.gov/pubmed/29151878
http://dx.doi.org/10.1111/eva.12457
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author Saumitou‐Laprade, Pierre
Vernet, Philippe
Vekemans, Xavier
Billiard, Sylvain
Gallina, Sophie
Essalouh, Laila
Mhaïs, Ali
Moukhli, Abdelmajid
El Bakkali, Ahmed
Barcaccia, Gianni
Alagna, Fiammetta
Mariotti, Roberto
Cultrera, Nicolò G. M.
Pandolfi, Saverio
Rossi, Martina
Khadari, Bouchaïb
Baldoni, Luciana
author_facet Saumitou‐Laprade, Pierre
Vernet, Philippe
Vekemans, Xavier
Billiard, Sylvain
Gallina, Sophie
Essalouh, Laila
Mhaïs, Ali
Moukhli, Abdelmajid
El Bakkali, Ahmed
Barcaccia, Gianni
Alagna, Fiammetta
Mariotti, Roberto
Cultrera, Nicolò G. M.
Pandolfi, Saverio
Rossi, Martina
Khadari, Bouchaïb
Baldoni, Luciana
author_sort Saumitou‐Laprade, Pierre
collection PubMed
description The olive (Olea europaea L.) is a typical important perennial crop species for which the genetic determination and even functionality of self‐incompatibility (SI) are still largely unresolved. It is still not known whether SI is under gametophytic or sporophytic genetic control, yet fruit production in orchards depends critically on successful ovule fertilization. We studied the genetic determination of SI in olive in light of recent discoveries in other genera of the Oleaceae family. Using intra‐ and interspecific stigma tests on 89 genotypes representative of species‐wide olive diversity and the compatibility/incompatibility reactions of progeny plants from controlled crosses, we confirmed that O. europaea shares the same homomorphic diallelic self‐incompatibility (DSI) system as the one recently identified in Phillyrea angustifolia and Fraxinus ornus. SI is sporophytic in olive. The incompatibility response differs between the two SI groups in terms of how far pollen tubes grow before growth is arrested within stigma tissues. As a consequence of this DSI system, the chance of cross‐incompatibility between pairs of varieties in an orchard is high (50%) and fruit production may be limited by the availability of compatible pollen. The discovery of the DSI system in O. europaea will undoubtedly offer opportunities to optimize fruit production.
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spelling pubmed-56804332017-11-17 Elucidation of the genetic architecture of self‐incompatibility in olive: Evolutionary consequences and perspectives for orchard management Saumitou‐Laprade, Pierre Vernet, Philippe Vekemans, Xavier Billiard, Sylvain Gallina, Sophie Essalouh, Laila Mhaïs, Ali Moukhli, Abdelmajid El Bakkali, Ahmed Barcaccia, Gianni Alagna, Fiammetta Mariotti, Roberto Cultrera, Nicolò G. M. Pandolfi, Saverio Rossi, Martina Khadari, Bouchaïb Baldoni, Luciana Evol Appl Original Articles The olive (Olea europaea L.) is a typical important perennial crop species for which the genetic determination and even functionality of self‐incompatibility (SI) are still largely unresolved. It is still not known whether SI is under gametophytic or sporophytic genetic control, yet fruit production in orchards depends critically on successful ovule fertilization. We studied the genetic determination of SI in olive in light of recent discoveries in other genera of the Oleaceae family. Using intra‐ and interspecific stigma tests on 89 genotypes representative of species‐wide olive diversity and the compatibility/incompatibility reactions of progeny plants from controlled crosses, we confirmed that O. europaea shares the same homomorphic diallelic self‐incompatibility (DSI) system as the one recently identified in Phillyrea angustifolia and Fraxinus ornus. SI is sporophytic in olive. The incompatibility response differs between the two SI groups in terms of how far pollen tubes grow before growth is arrested within stigma tissues. As a consequence of this DSI system, the chance of cross‐incompatibility between pairs of varieties in an orchard is high (50%) and fruit production may be limited by the availability of compatible pollen. The discovery of the DSI system in O. europaea will undoubtedly offer opportunities to optimize fruit production. John Wiley and Sons Inc. 2017-05-20 /pmc/articles/PMC5680433/ /pubmed/29151878 http://dx.doi.org/10.1111/eva.12457 Text en © 2017 The Authors. Evolutionary Applications published by John Wiley & Sons Ltd This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Saumitou‐Laprade, Pierre
Vernet, Philippe
Vekemans, Xavier
Billiard, Sylvain
Gallina, Sophie
Essalouh, Laila
Mhaïs, Ali
Moukhli, Abdelmajid
El Bakkali, Ahmed
Barcaccia, Gianni
Alagna, Fiammetta
Mariotti, Roberto
Cultrera, Nicolò G. M.
Pandolfi, Saverio
Rossi, Martina
Khadari, Bouchaïb
Baldoni, Luciana
Elucidation of the genetic architecture of self‐incompatibility in olive: Evolutionary consequences and perspectives for orchard management
title Elucidation of the genetic architecture of self‐incompatibility in olive: Evolutionary consequences and perspectives for orchard management
title_full Elucidation of the genetic architecture of self‐incompatibility in olive: Evolutionary consequences and perspectives for orchard management
title_fullStr Elucidation of the genetic architecture of self‐incompatibility in olive: Evolutionary consequences and perspectives for orchard management
title_full_unstemmed Elucidation of the genetic architecture of self‐incompatibility in olive: Evolutionary consequences and perspectives for orchard management
title_short Elucidation of the genetic architecture of self‐incompatibility in olive: Evolutionary consequences and perspectives for orchard management
title_sort elucidation of the genetic architecture of self‐incompatibility in olive: evolutionary consequences and perspectives for orchard management
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5680433/
https://www.ncbi.nlm.nih.gov/pubmed/29151878
http://dx.doi.org/10.1111/eva.12457
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