Embryogenesis in Oak species. A review

<p><em>Aim of study</em>: A review on the propagation methods of four <em>Quercus</em> species, namely <em>Q. suber, Q. robur, Q. ilex</em> and <em>Q. canariensis</em>, through somatic embryogenesis and anther embryogenesis are presented.</p&g...

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Main Authors: Aranzazu Gomez-Garay, Jose A. Manzanera, Beatriz Pintos-Lopez
Format: Article
Language:English
Published: Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria 2014-08-01
Series:Forest Systems
Online Access:http://revistas.inia.es/index.php/fs/article/view/5829
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spelling doaj-32d29dcbb6ad4dc39b0e6c1ee8b39e4e2020-11-25T01:36:43ZengInstituto Nacional de Investigación y Tecnología Agraria y AlimentariaForest Systems2171-98452014-08-0123219119810.5424/fs/2014232-058292032Embryogenesis in Oak species. A reviewAranzazu Gomez-Garay0Jose A. Manzanera1Beatriz Pintos-Lopez2Departamento de Biología Vegetal I: Fisiología Vegetal. Facultad de Biología. UCM. Madrid.E.T.S.I. Montes, Universidad Politécnica de Madrid, 28040 Madrid.Departamento de Biología Vegetal I: Fisiología Vegetal. Facultad de Biología. UCM. Madrid.<p><em>Aim of study</em>: A review on the propagation methods of four <em>Quercus</em> species, namely <em>Q. suber, Q. robur, Q. ilex</em> and <em>Q. canariensis</em>, through somatic embryogenesis and anther embryogenesis are presented.</p><p><em>Area of study</em>: The study comprises both Mediterranean and Atlantic oak species located in Spain.</p><p><em>Material and Methods</em>: Somatic embryogenesis was induced on immature zygotic embryos of diverse oak species, permitting the multiplication of half-sib families. Induction of haploid embryos and doubled haploids was assayed in both <em>Q. suber </em>and <em>Q. ilex</em> by temperature stress treatments of anthers containing late vacuolated microspores. The haploid origin of the anther embryos has been evaluated by quantitative nuclear DNA analysis through flow cytometry and by DNA microsatellite markers. Genetic transformation of cork oak has also been performed by means of <em>Agrobacterium tumefaciens </em>vectors. Proteomic analysis has been conducted to screen the diverse protein profiles followed by <em>in vitro</em> derived embryos during their development.</p><p><em>Research highlights</em>: Successful plant regeneration from both somatic and haploid embryos has been achieved. In the particular case of cork oak, doubled-haploid plants were obtained. Plantlets regenerated from selected parent trees through somatic embryogenesis were acclimated in the greenhouse and in the nursery, and were planted in an experimental plot in the field. Preliminary evaluation of the cork quality of the plants showed a good heritability correlation with the parent trees. This article revises the work of and is dedicated to Dr. M.A. Bueno, who devoted much of her professional life to the research on Biotechnology and Genetics of forest species, leading the Laboratory of Forest Biotechnology at the Spanish Institute of Agronomic Research (INIA).</p><p><strong>Key words</strong>: anther embryogenesis; microspore; pollen; <em>Quercus canariensis; Quercus ilex; Quercus robur; Quercus suber;</em> somatic embryogenesis. </p>http://revistas.inia.es/index.php/fs/article/view/5829
collection DOAJ
language English
format Article
sources DOAJ
author Aranzazu Gomez-Garay
Jose A. Manzanera
Beatriz Pintos-Lopez
spellingShingle Aranzazu Gomez-Garay
Jose A. Manzanera
Beatriz Pintos-Lopez
Embryogenesis in Oak species. A review
Forest Systems
author_facet Aranzazu Gomez-Garay
Jose A. Manzanera
Beatriz Pintos-Lopez
author_sort Aranzazu Gomez-Garay
title Embryogenesis in Oak species. A review
title_short Embryogenesis in Oak species. A review
title_full Embryogenesis in Oak species. A review
title_fullStr Embryogenesis in Oak species. A review
title_full_unstemmed Embryogenesis in Oak species. A review
title_sort embryogenesis in oak species. a review
publisher Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria
series Forest Systems
issn 2171-9845
publishDate 2014-08-01
description <p><em>Aim of study</em>: A review on the propagation methods of four <em>Quercus</em> species, namely <em>Q. suber, Q. robur, Q. ilex</em> and <em>Q. canariensis</em>, through somatic embryogenesis and anther embryogenesis are presented.</p><p><em>Area of study</em>: The study comprises both Mediterranean and Atlantic oak species located in Spain.</p><p><em>Material and Methods</em>: Somatic embryogenesis was induced on immature zygotic embryos of diverse oak species, permitting the multiplication of half-sib families. Induction of haploid embryos and doubled haploids was assayed in both <em>Q. suber </em>and <em>Q. ilex</em> by temperature stress treatments of anthers containing late vacuolated microspores. The haploid origin of the anther embryos has been evaluated by quantitative nuclear DNA analysis through flow cytometry and by DNA microsatellite markers. Genetic transformation of cork oak has also been performed by means of <em>Agrobacterium tumefaciens </em>vectors. Proteomic analysis has been conducted to screen the diverse protein profiles followed by <em>in vitro</em> derived embryos during their development.</p><p><em>Research highlights</em>: Successful plant regeneration from both somatic and haploid embryos has been achieved. In the particular case of cork oak, doubled-haploid plants were obtained. Plantlets regenerated from selected parent trees through somatic embryogenesis were acclimated in the greenhouse and in the nursery, and were planted in an experimental plot in the field. Preliminary evaluation of the cork quality of the plants showed a good heritability correlation with the parent trees. This article revises the work of and is dedicated to Dr. M.A. Bueno, who devoted much of her professional life to the research on Biotechnology and Genetics of forest species, leading the Laboratory of Forest Biotechnology at the Spanish Institute of Agronomic Research (INIA).</p><p><strong>Key words</strong>: anther embryogenesis; microspore; pollen; <em>Quercus canariensis; Quercus ilex; Quercus robur; Quercus suber;</em> somatic embryogenesis. </p>
url http://revistas.inia.es/index.php/fs/article/view/5829
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