表观遗传学
生物
染色质
DNA甲基化
组蛋白
遗传学
拟南芥
基因沉默
基因
染色质重塑
基因表达调控
表观遗传学
基因表达
拟南芥
计算生物学
突变体
作者
Tuncay Baubec,Huy Q. Dinh,Aleš Pečinka,Branislava Rakic,Wilfried Rozhon,Bonnie Wohlrab,Arndt von Haeseler,Ortrun Mittelsten Scheid
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2010-01-01
卷期号:22 (1): 34-47
被引量:83
标识
DOI:10.1105/tpc.109.072819
摘要
Epigenetic changes of gene expression can potentially be reversed by developmental programs, genetic manipulation, or pharmacological interference. However, a case of transcriptional gene silencing, originally observed in tetraploid Arabidopsis thaliana plants, created an epiallele resistant to many mutations or inhibitor treatments that activate many other suppressed genes. This raised the question about the molecular basis of this extreme stability. A combination of forward and reverse genetics and drug application provides evidence for an epigenetic double lock that is only alleviated upon the simultaneous removal of both DNA methylation and histone methylation. Therefore, the cooperation of multiple chromatin modifications can generate unanticipated stability of epigenetic states and contributes to heritable diversity of gene expression patterns.
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