Regulation of Seed Size by Hypomethylation of Maternal and Paternal Genomes
- 29 September 2006
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 142 (3) , 1160-1168
- https://doi.org/10.1104/pp.106.088849
Abstract
DNA methylation is an epigenetic modification of cytosine that is important for silencing gene transcription and transposons, gene imprinting, development, and seed viability. DNA METHYLTRANSFERASE1 (MET1) is the primary maintenance DNA methyltransferase in Arabidopsis (Arabidopsis thaliana). Reciprocal crosses between antisense MET1 transgenic and wild-type plants show that DNA hypomethylation has a parent-of-origin effect on seed size. However, due to the dominant nature of the antisense MET1 transgene, the parent with a hypomethylated genome, its gametophyte, and both the maternal and paternal genomes of the F(1) seed become hypomethylated. Thus, the distinct role played by hypomethylation at each generation is not known. To address this issue, we examined F(1) seed from reciprocal crosses using a loss-of-function recessive null allele, met1-6. Crosses between wild-type and homozygous met1-6 parents show that hypomethylated maternal and paternal genomes result in significantly larger and smaller F(1) seeds, respectively. Our analysis of crosses between wild-type and heterozygous MET1/met1-6 parents revealed that hypomethylation in the female or male gametophytic generation was sufficient to influence F(1) seed size. A recessive mutation in another gene that dramatically reduces DNA methylation, DECREASE IN DNA METHYLATION1, also causes parent-of-origin effects on F(1) seed size. By contrast, recessive mutations in genes that regulate a smaller subset of DNA methylation (CHROMOMETHYLASE3 and DOMAINS REARRANGED METHYLTRANSFERASES1 and 2) had little effect on seed size. Collectively, these results show that maternal and paternal genomes play distinct roles in the regulation of seed size in Arabidopsis.Keywords
This publication has 63 references indexed in Scilit:
- RNAi, DRD1, and Histone Methylation Actively Target Developmentally Important Non-CG DNA Methylation in ArabidopsisPLoS Genetics, 2006
- Dynamic regulatory interactions of Polycomb group genes: MEDEA autoregulation is required for imprinted gene expression in ArabidopsisGenes & Development, 2006
- Maintenance of DNA Methylation during theArabidopsisLife Cycle Is Essential for Parental ImprintingPlant Cell, 2006
- DNA Methylation Is Critical for Arabidopsis Embryogenesis and Seed ViabilityPlant Cell, 2006
- Gardening the genome: DNA methylation in Arabidopsis thalianaNature Reviews Genetics, 2005
- Interplay between Two Epigenetic MarksCurrent Biology, 2002
- Mobilization of transposons by a mutation abolishing full DNA methylation in ArabidopsisNature, 2001
- Development of endosperm in Arabidopsis thalianaSexual Plant Reproduction, 1999
- Targeted mutation of the DNA methyltransferase gene results in embryonic lethalityPublished by Elsevier ,1992
- Genomic imprinting in endosperm: its effect on seed development in crosses between species, and its implications for the evolution of apomixisPhilosophical Transactions Of The Royal Society B-Biological Sciences, 1991