Control of Early Seed Development
- 1 November 2001
- journal article
- review article
- Published by Annual Reviews in Annual Review of Cell and Developmental Biology
- Vol. 17 (1), 677-699
- https://doi.org/10.1146/annurev.cellbio.17.1.677
Abstract
Seed development requires coordinated expression of embryo and endosperm and has contributions from both sporophytic and male and female gametophytic genes. Genetic and molecular analyses in recent years have started to illuminate how products of these multiple genes interact to initiate seed development. Imprinting or differential expression of paternal and maternal genes seems to be involved in controlling seed development, presumably by controlling gene expression in developing endosperm. Epigenetic processes such as chromatin remodeling and DNA methylation affect imprinting of key seed-specific genes; however, the identity of many of these genes remains unknown. The discovery of FIS genes has illuminated control of autonomous endosperm development, a component of apomixis, which is an important developmental and agronomic trait. FIS genes are targets of imprinting, and the genes they control in developing endosperm are also regulated by DNA methylation and chromatin remodeling genes. These results define some exciting future areas of research in seed development.Keywords
This publication has 86 references indexed in Scilit:
- Apomixis is not developmentally conserved in related, genetically characterized Hieracium plants of varying ploidySexual Plant Reproduction, 2000
- Sexual and apomictic development in HieraciumSexual Plant Reproduction, 1998
- The evolution of double fertilization and endosperm: an ”historical" perspectiveSexual Plant Reproduction, 1998
- Dosage effects in the endosperm of diplosporous apomictic Tripsacum (Poaceae)Sexual Plant Reproduction, 1997
- Polarization predicts the pattern of cellularization in cereal endospermProtoplasma, 1996
- Role for DNA methylation in genomic imprintingNature, 1993
- Intragenomic conflict and the evolution of eusocialityJournal of Theoretical Biology, 1992
- The Maize Invertase-Deficient miniature-1 Seed Mutation Is Associated with Aberrant Pedicel and Endosperm Development.Plant Cell, 1992
- The microtubular cytoskeleton during development of the zygote, proembryo and free-nuclear endosperm inArabidopsis thaliana (L.) HeynhPlanta, 1991
- Selective forces in the emergence of the seed habitBiological Journal of the Linnean Society, 1989