New Approaches to Optimize Somatic Embryogenesis in Maritime Pine
Resumen: Maritime pine (Pinus pinaster Aiton) is a coniferous native of the Mediterranean basin. Because of its adaptability to a wide range of environmental conditions, the species have become a model for studies in coniferous forest management and functional genomics. Somatic embryogenesis (SE) has been so far, the preferred biotechnological strategy for maritime pine breeding programs initiated at the middle-end of the 20th century. To overcome the limitations of the induction and maturation phases in maritime pine SE, we analyzed the possible maternal influence on the embryogenic capability of megagametophytes from controlled crosses, as well as the effect of the temperature and water availability during SE process on the production of plants. A strong maternal effect on the embryogenic potential of maritime pine megagametophytes was observed in our experiments using half-sib and full-sib progenies, while paternal effect was almost undetectable. Besides, it seems possible to improve somatic embryo production of maritime pine megagametophytes by adjusting optimal temperature throughout the process: 28 degrees C during induction and proliferation, and 23 degrees C during the maturation phase. Using induction and proliferation media with reduced water availability (6 g/L Gelrite) can also increase embryo production. Since other limitation of maritime pine SE is culture decline of embryogenic masses (EMs), that reduces embryo yield and germination, we assessed the profile of ABA and IAA and the expression of two embryogenesis-related genes (LEC1 and WOX2) during maturation of EMs of two morphotypes that differed in their maturation capability. Spiky morphotype (SK), with high maturation capability, had a steady increase in both hormones along the 12 weeks of the maturation, whereas ABA content in smooth morphotype picked at the 4th week and dropped. EMs with this morphotype also had a higher IAA content at the beginning of the maturation. A decrease of LEC1 and WOX2 gene expression over the course of embryo development was found to be characteristic of the SK with high maturation capability.
Idioma: Inglés
DOI: 10.3389/fpls.2019.00138
Año: 2019
Publicado en: FRONTIERS IN PLANT SCIENCE 10 (2019), 138 [14 pp]
ISSN: 1664-462X

Factor impacto JCR: 4.402 (2019)
Categ. JCR: PLANT SCIENCES rank: 19 / 234 = 0.081 (2019) - Q1 - T1
Factor impacto SCIMAGO: 1.691 - Plant Science (Q1)

Financiación: info:eu-repo/grantAgreement/ES/MINECO-FEDER/AGL2013-47400-C4-4-R
Financiación: info:eu-repo/grantAgreement/ES/MINECO-FEDER/AGL2016-76143-C4-1-R
Financiación: info:eu-repo/grantAgreement/ES/MINECO-FEDER/BES-2014-69171
Tipo y forma: Artículo (Versión definitiva)
Área (Departamento): Área Producción Vegetal (Dpto. CC.Agrar.y Medio Natural)

Creative Commons Debe reconocer adecuadamente la autoría, proporcionar un enlace a la licencia e indicar si se han realizado cambios. Puede hacerlo de cualquier manera razonable, pero no de una manera que sugiera que tiene el apoyo del licenciador o lo recibe por el uso que hace. No puede utilizar el material para una finalidad comercial. Si remezcla, transforma o crea a partir del material, no puede difundir el material modificado.


Exportado de SIDERAL (2020-07-16-09:10:35)


Visitas y descargas

Este artículo se encuentra en las siguientes colecciones:
Artículos



 Registro creado el 2019-05-08, última modificación el 2020-07-16


Versión publicada:
 PDF
Valore este documento:

Rate this document:
1
2
3
 
(Sin ninguna reseña)