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首页> 外文期刊>Nucleic Acids Research >Compromised telomere maintenance in hypomethylated Arabidopsis thaliana plants
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Compromised telomere maintenance in hypomethylated Arabidopsis thaliana plants

机译:低甲基化拟南芥植物的端粒维持能力受损

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Telomeres, nucleoprotein structures at the ends of linear eukaryotic chromosomes, are important for the maintenance of genomic stability. Telomeres were considered as typical heterochromatic regions, but in light of recent results, this view should be reconsidered. Asymmetrically located cytosines in plant telomeric DNA repeats may be substrates for a DNA methyltransferase enzyme and indeed, it was shown that these repeats are methylated. Here, we analyse the methylation of telomeric cytosines and the length of telomeres in Arabidopsis thaliana methylation mutants (met 1-3 and ddm 1-8), and in their wild-type siblings that were germinated in the presence of hypomethylation drugs. Our results show that cytosine methylation in telomeric repeats depends on the activity of MET1 and DDM1 enzymes. Significantly shortened telomeres occur in later generations of methylation mutants as well as in plants germinated in the presence of hypomethylation drugs, and this phenotype is stably transmitted to the next plant generation. A possible role of compromised in vivo telomerase action in the observed telomere shortening is hypothesized based on telomere analysis of hypomethylated telomerase knockout plants. Results are discussed in connection with previous data in this field obtained using different model systems.
机译:端粒是线性真核染色体末端的核蛋白结构,对于维持基因组稳定性非常重要。端粒被认为是典型的异色区域,但是根据最近的结果,应该重新考虑这种观点。植物端粒DNA重复序列中不对称定位的胞嘧啶可能是DNA甲基转移酶的底物,实际上,已证明这些重复序列被甲基化。在这里,我们分析了拟南芥甲基化突变体(met 1-3和ddm 1-8)及其在低甲基化药物存在下萌发的野生型同胞中端粒胞嘧啶的甲基化和端粒的长度。我们的结果表明,端粒重复序列中的胞嘧啶甲基化取决于MET1和DDM1酶的活性。在甲基化突变体的后代以及在存在低甲基化药物的情况下萌发的植物中,端粒显着缩短,并且该表型稳定地传递给下一代植物。基于对低甲基化的端粒酶敲除植物的端粒分析,推测了体内端粒酶功能受损在观察到的端粒缩短中的可能作用。结合使用不同模型系统获得的该领域的先前数据讨论了结果。

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