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Characterization of an Arabidopsis thaliana DNA hypomethylation mutant.

机译:拟南芥DNA亚甲基化突变体的表征。

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We have recently isolated two Arabidopsis thaliana DNA hypomethylation mutations, identifying the DDM1 locus, that cause a 70% reduction in genomic 5-methylcytosine levels [1]. Here we describe further phenotypic and biochemical characterization of the ddm1 mutants. ddm1/ddm1 homozygotes exhibited altered leaf shape, increased cauline leaf number, and a delay in the onset of flowering when compared to non-mutant siblings in a segregating population. Our biochemical characterization investigated two possible mechanisms for DNA hypomethylation. In order to see if ddm1 mutations affect DNA methyltransferase function, we compared DNA methyltransferase activities in extracts from wild-type and ddm1 mutant tissues. The ddm1 mutant extracts had as much DNA methyltransferase activity as that of the wild-type for both the CpI and CpNpG substrates suggesting that the DDM1 locus does not encode a DNA methyltransferase. Moreover, the ddm1 mutations did not affect the intracellular level of S-adenosylmethionine, the methyl group donor for DNA methylation. The possibility that the DDM1 gene product functions as a modifier of DNA methylation is discussed.
机译:我们最近分离了两个拟南芥DNA低甲基化突变,确定了DDM1基因座,该突变导致基因组5-甲基胞嘧啶水平降低了70%[1]。在这里,我们描述了ddm1突变体的进一步表型和生化特征。与隔离群体中的非突变同胞相比,ddm1 / ddm1纯合子表现出改变的叶片形状,增加的茎生叶数目和开花开始的延迟。我们的生化特征研究了DNA甲基化不足的两种可能机制。为了查看ddm1突变是否影响DNA甲基转移酶功能,我们比较了野生型和ddm1突变组织提取物中的DNA甲基转移酶活性。对于CpI和CpNpG底物,ddm1突变体提取物具有与野生型一样多的DNA甲基转移酶活性,这表明DDM1基因座不编码DNA甲基转移酶。此外,ddm1突变不会影响细胞内S-腺苷甲硫氨酸的水平,S-腺苷甲硫氨酸是DNA甲基化的甲基供体。讨论了DDM1基因产物充当DNA甲基化修饰剂的可能性。

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