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首页> 外文期刊>Russian journal of genetics >Allopolyploidy in wheat induces rapid and heritable alterations in DNA methylation patterns of cellular genes and mobile elements
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Allopolyploidy in wheat induces rapid and heritable alterations in DNA methylation patterns of cellular genes and mobile elements

机译:小麦中的异源多倍体诱导了细胞基因和移动元件的DNA甲基化模式的快速而遗传的改变

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摘要

Whereas accumulating recent evidences indicate that allopolyploid formation in plants is accompanied by rapid and non-Mendelian genomic changes, some other works showed genomic stasis in both nascent and natural allopolyploids. To further study the issue, we performed global DNA fingerprinting of a newly synthesized allohexaploid wheat and its natural counterpart, the common wheat, by AFLP analysis. It was found that ca. 20% bands showed deviation from parental additivity in both synthetic and natural common wheat. Sequence analysis indicates that a majority of the changed bands represent known-function genes and transposable elements. DNA gel blot analysis showed that the main type of changes in the amphiploid is epigenetic in nature, i.e., alteration in DNA methylation patterns. Two types of alterations in methylation, random and non-random, were detected, and both types were stably inherited. Possible causes and implications of the epigenetic changes in allopolyploid genome evolution and speciation are discussed.
机译:尽管越来越多的证据表明植物中的异源多倍体形成伴随着快速且非孟德尔的基因组变化,但其他一些研究表明新生和天然异源多倍体均具有基因组停滞。为了进一步研究该问题,我们通过AFLP分析对新合成的异六倍体小麦及其天然对应物普通小麦进行了全球DNA指纹分析。据发现,约。在合成小麦和天然普通小麦中,有20%的条带显示出与亲本加性的偏差。序列分析表明,大多数改变的条带代表已知功能的基因和转座因子。 DNA凝胶印迹分析表明,两倍体的主要变化类型本质上是表观遗传的,即DNA甲基化模式的改变。检测到两种类型的甲基化改变,随机和非随机,并且两种类型都稳定遗传。讨论了异源多倍体基因组进化和物种形成的表观遗传变化的可能原因和影响。

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