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Epigenetic Variability Among Saffron Crocus (Crocus sativus L.) Accessions Characterized by Different Phenotypes

机译:番红花番红花(番红花Sativus L.)的表观遗传变异性,其特征在于不同的表型

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摘要

This work represents the first epigenomic study carried out on saffron crocus. Five accessions of saffron, showing differences in tepal pigmentation, yield of saffron and flowering time, were analyzed at the epigenetic level by applying a methylation-sensitive restriction enzyme-sequencing (MRE-seq) approach. Five accession-specific hypomethylomes plus a reference hypomethylome, generated by combining the sequence data from the single accessions, were obtained. Assembled sequences were annotated against existing online databases. In the absence of the Crocus genome, the rice genome was mainly used as the reference as it is the best annotated genome among monocot plants. Comparison of the hypomethylomes revealed many differentially methylated regions, confirming the high epigenetic variability present among saffron accessions, including sequences encoding for proteins that could be good candidates to explain the accessions’ alternative phenotypes. In particular, transcription factors involved in flowering process (MADS-box and TFL) and for the production of pigments (MYB) were detected. Finally, by comparing the generated sequences of the different accessions, a high number of SNPs, likely having arisen as a consequence of the prolonged vegetative propagation, were detected, demonstrating surprisingly high genetic variability. Gene ontology (GO) was performed to map and visualize sequence polymorphisms located within the GOs and to compare their distributions among different accessions. As well as suggesting the possible existence of alternative phenotypes with a genetic basis, a clear difference in polymorphic GO is present among accessions based on their geographic origin, supporting a possible signature of selection in the Indian accession with respect to the Spanish ones.
机译:这项工作代表了在番红花番红花进行的第一研究。通过施加甲基化敏感的限制酶测序(MRE-SEQ)方法,在表观遗传水平下分析了藏红花的五个藏红花,显示Tepal色素沉着,藏红花和开花时间的差异。获得了通过组合来自单个载体的序列数据,得到了5种依赖的特异性低甲基胺加上参考甲基汞。组装序列针对现有的在线数据库注释。在没有番红花毒基因组的情况下,水稻基因组主要用作参考,因为它是单子叶植物中最好的注释基因组。低甲基脲的比较揭示了许多差异甲基化区域,证实了藏红花征的高表观遗传可变性,包括编码蛋白质的序列,该蛋白质可以是良好的候选者来解释载体的替代表型。特别是,检测到开花过程(MADS-BOX和TFL)和生产颜料(MYB)的转录因子。最后,通过比较不同载体的产生序列,检测到,由于延长的营养繁殖的结果,可能出现的大量SNP,展示了令人惊讶的高遗传变异性。进行基因本体(GO)以进行地图和可视化位于GOS内的序列多态性,并将其分布与不同的载体之间的分布进行比较。除了暗示具有遗传基础的替代表型可能存在的可能存在,基于其地理来源的载体之间存在多态差异,支持在与西班牙语中的印度人中选择的选择签名。

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