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The Variation Analysis of DNA Methylation in Wheat Carrying Gametocidal Chromosome 3C from Aegilops triuncialis

机译:小麦携带的杀配子体染色体3C的DNA甲基化变异分析

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摘要

Gametocidal (Gc) chromosomes can ensure their preferential transmission by killing the gametes without themselves through causing chromosome breakage and therefore have been exploited as an effective tool for genetic breeding. However, to date very little is known about the molecular mechanism of Gc action. In this study, we used methylation-sensitive amplified polymorphism (MSAP) technique to assess the extent and pattern of cytosine methylation alterations at the whole genome level between two lines of wheat Gc addition line and their common wheat parent. The results indicated that the overall levels of cytosine methylation of two studied Gc addition lines (CS–3C and CS–3C3C, 48.68% and 48.65%, respectively) were significantly increased when compared to common wheat CS (41.31%) and no matter fully methylated or hemimethylated rates enhanced in Gc addition lines. A set of 30 isolated fragments that showed different DNA methylation or demethylation patterns between the three lines were sequenced and the results indicated that 8 fragments showed significant homology to known sequences, of which three were homologous to MITE transposon (Miniature inverted–repeat transposable elements), LTR-retrotransposon WIS-1p and retrotransposon Gypsy, respectively. Overall, our results showed that DNA methylation could play a role in the Gc action.
机译:杀配子(Gc)染色体可通过杀死配子而不会导致染色体断裂来确保其优先传播,因此已被用作基因育种的有效工具。然而,迄今为止,对Gc作用的分子机理了解甚少。在这项研究中,我们使用甲基化敏感的扩增多态性(MSAP)技术评估了小麦Gc加成系的两个品系与其普通小麦亲本之间在全基因组水平上胞嘧啶甲基化改变的程度和模式。结果表明,与普通小麦CS(41.31%)相比,两个研究的Gc添加系(CS–3C和CS–3C3C,分别为48.68%和48.65%)的胞嘧啶甲基化总体水平显着提高,并且完全没有关系。 Gc加成线提高了甲基化或半甲基化的速率。对一组分离的30个片段进行了测序,这些片段显示了三个品系之间不同的DNA甲基化或去甲基化模式,结果表明8个片段与已知序列具有显着的同源性,其中三个与MITE转座子(微型反向重复转座因子)同源,LTR-逆转座子WIS-1p和逆转座子吉普赛人。总体而言,我们的结果表明,DNA甲基化可能在Gc的作用中起作用。

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