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DNA Methylation Analysis of Dormancy Release in Almond (Prunus dulcis) Flower Buds Using Epi-Genotyping by Sequencing

机译:杏花蕾休眠释放的DNA甲基化分析通过表位基因分型测序

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摘要

DNA methylation and histone post-translational modifications have been described as epigenetic regulation mechanisms involved in developmental transitions in plants, including seasonal changes in fruit trees. In species like almond (Prunus dulcis (Mill.) D.A: Webb), prolonged exposure to cold temperatures is required for dormancy release and flowering. Aiming to identify genomic regions with differential methylation states in response to chill accumulation, we carried out Illumina reduced-representation genome sequencing on bisulfite-treated DNA from floral buds. To do this, we analyzed almond genotypes with different chilling requirements and flowering times both before and after dormancy release for two consecutive years. The study was performed using epi-Genotyping by Sequencing (epi-GBS). A total of 7317 fragments were sequenced and the samples compared. Out of these fragments, 677 were identified as differentially methylated between the almond genotypes. Mapping these fragments using the Prunus persica (L.) Batsch v.2 genome as reference provided information about coding regions linked to early and late flowering methylation markers. Additionally, the methylation state of ten gene-coding sequences was found to be linked to the dormancy release process.
机译:DNA甲基化和组蛋白翻译后修饰已被描述为表观遗传调控机制,参与植物的发育过渡,包括果树的季节性变化。在诸如杏仁(Prunus dulcis(Mill。)D.A:Webb)的物种中,休眠释放和开花需要长时间暴露于低温。为了鉴定响应冷积累的甲基化状态不同的基因组区域,我们对亚硫酸氢盐处理的花蕾DNA进行了Illumina还原表示基因组测序。为此,我们分析了连续两年休眠释放前后具有不同冷藏需求和开花时间的杏仁基因型。该研究是通过表观基因分型(epi-GBS)进行的。总共测序了7317个片段,并比较了样品。在这些片段中,有677个在杏仁基因型之间被鉴定为差异甲基化。使用Prunus persica(L.)Batsch v.2基因组作为参考对这些片段进行作图提供了有关与早期和晚期开花甲基化标记连接的编码区的信息。另外,发现十个基因编码序列的甲基化状态与休眠释放过程有关。

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