The role of chromatin modifications in somatic embryogenesis in plants

Somatic embryogenesis (SE) is a powerful tool for plant genetic improvement, when used in combination with agricultural traditional techniques, and it is being used to understand the different processes that occur during the development of plant embryogenesis. SE onset depends on a complex network o...

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Main Authors: Clelia eDe-la-Peña, Geovanny I. Nic-Can, Rosa M. Galaz-Ávalos, Randy eAvilez-Montalvo, Víctor M. Loyola-Vargas
Format: Article
Language:English
Published: Frontiers Media S.A. 2015-08-01
Series:Frontiers in Plant Science
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00635/full
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spelling doaj-174c191a285447bf9999dda136ad36272020-11-24T21:56:40ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2015-08-01610.3389/fpls.2015.00635151899The role of chromatin modifications in somatic embryogenesis in plantsClelia eDe-la-Peña0Geovanny I. Nic-Can1Rosa M. Galaz-Ávalos2Randy eAvilez-Montalvo3Víctor M. Loyola-Vargas4Centro de Investigación Científica de YucatánUniversidad Autónoma de YucatánCentro de Investigación Científica de YucatánCentro de Investigación Científica de YucatánCentro de Investigación Científica de YucatánSomatic embryogenesis (SE) is a powerful tool for plant genetic improvement, when used in combination with agricultural traditional techniques, and it is being used to understand the different processes that occur during the development of plant embryogenesis. SE onset depends on a complex network of interactions among plant growth regulators, mainly auxins and cytokinins, during the proembryogenic early stages, and ethylene, gibberellic and abscisic acids later in the development of the somatic embryos. These growth regulators control spatial and temporal regulation of multiple genes in order to initiate the change in the genetic program of the somatic cells, as well as the transition among embryo developmental stages. In recent years, epigenetic mechanisms have emerged as critical factors during SE. Some early reports indicate that auxins modify the levels of DNA methylation in embryogenic cells. The changes in DNA methylation patterns are associated with the regulation of several genes involved in SE, such as WUS, BBM1, LEC, and several others. In this review, we highlight the more recent discoveries in the role of epigenetic regulation of SE. In addition, we include a survey of novel approaches to the study of SE, and new opportunities to focus SE studies.http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00635/fullDNA Methylationepigeneticshistone modificationsomaclonal variationsomatic embryogenesis
collection DOAJ
language English
format Article
sources DOAJ
author Clelia eDe-la-Peña
Geovanny I. Nic-Can
Rosa M. Galaz-Ávalos
Randy eAvilez-Montalvo
Víctor M. Loyola-Vargas
spellingShingle Clelia eDe-la-Peña
Geovanny I. Nic-Can
Rosa M. Galaz-Ávalos
Randy eAvilez-Montalvo
Víctor M. Loyola-Vargas
The role of chromatin modifications in somatic embryogenesis in plants
Frontiers in Plant Science
DNA Methylation
epigenetics
histone modification
somaclonal variation
somatic embryogenesis
author_facet Clelia eDe-la-Peña
Geovanny I. Nic-Can
Rosa M. Galaz-Ávalos
Randy eAvilez-Montalvo
Víctor M. Loyola-Vargas
author_sort Clelia eDe-la-Peña
title The role of chromatin modifications in somatic embryogenesis in plants
title_short The role of chromatin modifications in somatic embryogenesis in plants
title_full The role of chromatin modifications in somatic embryogenesis in plants
title_fullStr The role of chromatin modifications in somatic embryogenesis in plants
title_full_unstemmed The role of chromatin modifications in somatic embryogenesis in plants
title_sort role of chromatin modifications in somatic embryogenesis in plants
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2015-08-01
description Somatic embryogenesis (SE) is a powerful tool for plant genetic improvement, when used in combination with agricultural traditional techniques, and it is being used to understand the different processes that occur during the development of plant embryogenesis. SE onset depends on a complex network of interactions among plant growth regulators, mainly auxins and cytokinins, during the proembryogenic early stages, and ethylene, gibberellic and abscisic acids later in the development of the somatic embryos. These growth regulators control spatial and temporal regulation of multiple genes in order to initiate the change in the genetic program of the somatic cells, as well as the transition among embryo developmental stages. In recent years, epigenetic mechanisms have emerged as critical factors during SE. Some early reports indicate that auxins modify the levels of DNA methylation in embryogenic cells. The changes in DNA methylation patterns are associated with the regulation of several genes involved in SE, such as WUS, BBM1, LEC, and several others. In this review, we highlight the more recent discoveries in the role of epigenetic regulation of SE. In addition, we include a survey of novel approaches to the study of SE, and new opportunities to focus SE studies.
topic DNA Methylation
epigenetics
histone modification
somaclonal variation
somatic embryogenesis
url http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00635/full
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