Plant embryogenesis

The subject of this review is the development of the plant embryo. Plant embryo-genesis is a unique process in the sense that it can be started not only from the fertilized egg but can also be initiated from other cells of the reproductive apparatus and even from somatic cells. One of the challenges...

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Published inCritical reviews in plant sciences Vol. 16; no. 6; pp. 535 - 576
Main Authors Mordhorst, A.P. (Wageningen Agricultural University, Wageningen (Netherlands)), Toonen, M.A.J, Vries, S.C. de
Format Journal Article
LanguageEnglish
Published Colchester Taylor & Francis Group 1997
Taylor & Francis
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Online AccessGet full text
ISSN0735-2689
1549-7836
DOI10.1080/07352689709701959

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Abstract The subject of this review is the development of the plant embryo. Plant embryo-genesis is a unique process in the sense that it can be started not only from the fertilized egg but can also be initiated from other cells of the reproductive apparatus and even from somatic cells. One of the challenges of this field is therefore to unravel the molecular mechanisms that lead to the formation of a cell destined to form an embryo. A second important area of research is to determine the molecular basis of pattern formation in the embryo, a process that results in a stereotyped organization of a seedling. On the one hand, the pattern formation process has to establish precisely arranged tissue organization, but on the other hand sufficient flexibility during plant development has to be maintained to allow continuous formation of new organs from meristems. In this review we summarize recent work that employs a variety of experimental systems that range from genetic dissection of pattern formation in the zygotic embryo, androgenesis and in vitro fertilization to somatic embryogenesis. While each of these systems highlights a different aspect of embryogenesis, they can be mutually beneficial in helping to understand the making of the plant embryo.
AbstractList The subject of this review is the development of the plant embryo. Plant embryo-genesis is a unique process in the sense that it can be started not only from the fertilized egg but can also be initiated from other cells of the reproductive apparatus and even from somatic cells. One of the challenges of this field is therefore to unravel the molecular mechanisms that lead to the formation of a cell destined to form an embryo. A second important area of research is to determine the molecular basis of pattern formation in the embryo, a process that results in a stereotyped organization of a seedling. On the one hand, the pattern formation process has to establish precisely arranged tissue organization, but on the other hand sufficient flexibility during plant development has to be maintained to allow continuous formation of new organs from meristems. In this review we summarize recent work that employs a variety of experimental systems that range from genetic dissection of pattern formation in the zygotic embryo, androgenesis and in vitro fertilization to somatic embryogenesis. While each of these systems highlights a different aspect of embryogenesis, they can be mutually beneficial in helping to understand the making of the plant embryo.
Author Mordhorst, A.P. (Wageningen Agricultural University, Wageningen (Netherlands))
Vries, S.C. de
Toonen, M.A.J
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IsPeerReviewed true
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Issue 6
Keywords Androgenesis
Embryonic development
Zygote
Angiospermae
Apomixis
Polarity
Spermatophyta
Review
Fecundation
Somatic embryo
Language English
License CC BY 4.0
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PublicationDate (1997)
1/1/1997
1997-01-00
1997
PublicationDateYYYYMMDD 1997-01-01
PublicationDate_xml – year: 1997
  text: (1997)
PublicationDecade 1990
PublicationPlace Colchester
PublicationPlace_xml – name: Colchester
PublicationTitle Critical reviews in plant sciences
PublicationYear 1997
Publisher Taylor & Francis Group
Taylor & Francis
Publisher_xml – name: Taylor & Francis Group
– name: Taylor & Francis
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Snippet The subject of this review is the development of the plant embryo. Plant embryo-genesis is a unique process in the sense that it can be started not only from...
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SubjectTerms Agronomy. Soil science and plant productions
ANDROGENESE
ANDROGENESIS
APOMIXIE
APOMIXIS
Biological and medical sciences
CELL DIVISION
CIGOTOS
DESARROLLO EMBRIONARIO
DEVELOPPEMENT EMBRYONNAIRE
DIVISION CELLULAIRE
DIVISION CELULAR
Economic plant physiology
EMBRIOGENESIS SOMATICA
EMBRIONES VEGETALES
Embryo development. Germination
EMBRYOGENESE SOMATIQUE
Embryology
EMBRYON VEGETAL
EMBRYONIC DEVELOPMENT
EPS
EXPERIMENTACION IN VITRO
EXPERIMENTATION IN VITRO
EXPRESION GENICA
EXPRESSION DES GENES
Fundamental and applied biological sciences. Psychology
GENE EXPRESSION
GENETICA MOLECULAR
GENETIQUE MOLECULAIRE
Growth and development
IN VITRO EXPERIMENTATION
in vitro fertilization
Laboratorium voor Moleculaire biologie
Laboratory of Molecular Biology
LITERATURE REVIEWS
MERISTEMAS
MERISTEME
MERISTEMS
MOLECULAR GENETICS
ORGANOGENESE
ORGANOGENESIS
Plant cytology, morphology, systematics, chorology and evolution
PLANT EMBRYOS
Plant physiology and development
PLANTULAS
PLANTULE
POLARIDAD
POLARITE
POLARITY
SEEDLINGS
SOMATIC EMBRYOGENESIS
Tissue cultures, protoplasts
ZYGOTE
ZYGOTES
zygotic embryogenesis
Title Plant embryogenesis
URI https://www.tandfonline.com/doi/abs/10.1080/07352689709701959
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Volume 16
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