Dorweiler J E, Carey C C, Kubo K M, Hollick J B, Kermicle J L, Chandler V L
Plant Sciences Department, University of Arizona, Tucson, Arizona 85721, USA.
Plant Cell. 2000 Nov;12(11):2101-18. doi: 10.1105/tpc.12.11.2101.
Paramutation is the directed, heritable alteration of the expression of one allele when heterozygous with another allele. Here, the isolation and characterization of a mutation affecting paramutation, mediator of paramutation1-1 (mop1-1), are described. Experiments demonstrate that the wild-type gene Mop1 is required for establishment and maintenance of the paramutant state. The mop1-1 mutation affects paramutation at the multiple loci tested but has no effect on alleles that do not participate in paramutation. The mutation does not alter the amounts of actin and ubiquitin transcripts, which suggests that the mop1 gene does not encode a global repressor. Maize plants homozygous for mop1-1 can have pleiotropic developmental defects, suggesting that mop1-1 may affect more genes than just the known paramutant ones. The mop1-1 mutation does not alter the extent of DNA methylation in rDNA and centromeric repeats. The observation that mop1 affects paramutation at multiple loci, despite major differences between these loci in their gene structure, correlations with DNA methylation, and stability of the paramutant state, suggests that a common mechanism underlies paramutation. A protein-based epigenetic model for paramutation is discussed.
副突变是指一个等位基因在与另一个等位基因杂合时,其表达发生的定向、可遗传的改变。本文描述了一个影响副突变的突变体——副突变介导因子1-1(mop1-1)的分离和鉴定。实验表明,野生型基因Mop1是副突变状态建立和维持所必需的。mop1-1突变在多个测试位点影响副突变,但对不参与副突变的等位基因没有影响。该突变不会改变肌动蛋白和泛素转录本的量,这表明mop1基因不编码一个全局性的阻遏物。mop1-1纯合的玉米植株可能具有多效性发育缺陷,这表明mop1-1可能影响的基因不止已知的副突变相关基因。mop1-1突变不会改变核糖体DNA(rDNA)和着丝粒重复序列中的DNA甲基化程度。尽管这些位点在基因结构、与DNA甲基化的相关性以及副突变状态的稳定性方面存在重大差异,但mop1在多个位点影响副突变这一观察结果表明,副突变存在一个共同的机制。本文还讨论了基于蛋白质的副突变表观遗传模型。