首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >Differential DNA methylation and gene expression in reciprocal hybrids between Solanum lycopersicum and S. pimpinellifolium
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Differential DNA methylation and gene expression in reciprocal hybrids between Solanum lycopersicum and S. pimpinellifolium

机译:茄果和平皮S.Pimpinellifolium互反杂种的差异DNA甲基化和基因表达

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摘要

Wide hybridization is a common and efficient breeding strategy for enhancing crop yield and quality. An interesting phenomenon is that the reciprocal hybrids usually show different phenotypes, and its underlying mechanism is not well understood. Here, we reported our comparative analysis of the DNA methylation patterns in Solanum lycopersicum, Solanum pimpinellifolium and their reciprocal hybrids by methylated DNA immunoprecipitation sequencing. The reciprocal hybrids had lower levels of DNA methylation in CpG islands and LTR retroelements when compared with those of their parents. Importantly, remarkable differences in DNA methylation patterns, mainly in introns and CDS regions, were revealed between the reciprocal hybrids. These different methylated regions were mapped to 79 genes, 14 of which were selected for analysis of gene expression levels. While there was an inverse correlation between DNA methylation and gene expression in promoter regions, the relationship was complicated in gene body regions. Further association analysis revealed that there were 15 differentially methylated genes associated with siRNAs, and that the methylation levels of these genes were inversely correlated with respective siRNAs. All these data raised the possibility that the direction of hybridization induced the divergent epigenomes leading to changes in the transcription levels of reciprocal hybrids.
机译:广泛杂交是提高作物产量和品质的常见且有效的育种策略。一个有趣的现象是,相互的杂种通常表现出不同的表型,并且其潜在的机制还没有被很好地理解。在这里,我们报告了我们通过甲基化DNA免疫沉淀测序技术对番茄,茄子及其互生杂种的DNA甲基化模式进行的比较分析。与它们的亲本相比,对等杂种在CpG岛和LTR反转录元件中的DNA甲基化水平较低。重要的是,在相互的杂种之间揭示了DNA甲基化模式的显着差异,主要在内含子和CDS区域。这些不同的甲基化区域被定位到79个基因,其中14个被选择用于基因表达水平的分析。尽管启动子区域中的DNA甲基化与基因表达之间呈负相关,但在基因体区域中,这种关系却很复杂。进一步的关联分析表明,有15个差异化的甲基化基因与siRNA相关,并且这些基因的甲基化水平与各自的siRNA呈负相关。所有这些数据提高了杂交方向诱导不同表观基因组导致相互杂交的转录水平发生变化的可能性。

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