Dynamics of imprinted genes and their epigenetic mechanisms in castor bean seed with persistent endosperm

胚乳 基因组印记 生物 DNA甲基化 表观遗传学 印记(心理学) 基因 遗传学 基因表达
作者
Bing Han,Yelan Li,Di Wu,Li D,Aizhong Liu,Wei Xü
出处
期刊:New Phytologist [Wiley]
卷期号:240 (5): 1868-1882 被引量:3
标识
DOI:10.1111/nph.19265
摘要

Summary Genomic imprinting refers to parent‐of‐origin‐dependent gene expression and primarily occurs in the endosperm of flowering plants, but its functions and epigenetic mechanisms remain to be elucidated in eudicots. Castor bean, a eudicot with large and persistent endosperm, provides an excellent system for studying the imprinting. Here, we identified 131 imprinted genes in developing endosperms and endosperm at seed germination phase of castor bean, involving into the endosperm development, accumulation of storage compounds and specially seed germination. Our results showed that the transcriptional repression of maternal allele of DNA METHYLTRANSFERASE 1 ( MET1 ) may be required for maternal genome demethylation in the endosperm. DNA methylation analysis showed that only a small fraction of imprinted genes was associated with allele‐specific DNA methylation, and most of them were closely associated with constitutively unmethylated regions (UMRs), suggesting a limited role for DNA methylation in controlling genomic imprinting. Instead, histone modifications can be asymmetrically deposited in maternal and paternal genomes in a DNA methylation‐independent manner to control expression of most imprinted genes. These results expanded our understanding of the occurrence and biological functions of imprinted genes and showed the evolutionary flexibility of the imprinting machinery and mechanisms in plants.
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