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首页> 外文期刊>Nucleic Acids Research >Genomic imprinting, methylation and parent-of-origin effects in reciprocal hybrid endosperm of castor bean
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Genomic imprinting, methylation and parent-of-origin effects in reciprocal hybrid endosperm of castor bean

机译:蓖麻子相互杂交的胚乳中的基因组印迹,甲基化和母本效应

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摘要

Genomic imprinting often results in parent-of-origin specific differential expression of maternally and paternally inherited alleles. In plants, the triploid endosperm is where gene imprinting occurs most often, but aside from studies on Arabidopsis, little is known about gene imprinting in dicotyledons. In this study, we inspected genomic imprinting in castor bean (Ricinus communis) endosperm, which persists throughout seed development. After mapping out the polymorphic SNP loci between accessions ZB306 and ZB107, we generated deep sequencing RNA profiles of F1 hybrid seeds derived from reciprocal crosses. Using polymorphic SNP sites to quantify allele-specific expression levels, we identified 209 genes in reciprocal endosperms with potential parent-of-origin specific expression, including 200 maternally expressed genes and 9 paternally expressed genes. In total, 57 of the imprinted genes were validated via reverse transcriptase-polymerase chain reaction sequencing, and analysis of the genomic DNA methylation distribution between embryo and endosperm tissues showed significant hypomethylation in the endosperm and an enrichment of differentially methylated regions around the identified genes. Curiously, the expression of the imprinted genes was not tightly linked to DNA methylation. These results largely extended gene imprinting information existing in plants, providing potential directions for further research in gene imprinting
机译:基因组印记通常导致母本和父本遗传的等位基因的原产地特异性差异表达。在植物中,三倍体胚乳是最常发生基因印迹的地方,但是除了对拟南芥的研究以外,对双子叶植物中基因印迹的了解还很少。在这项研究中,我们检查了蓖麻子(Ricinus communis)胚乳中的基因组印迹,该胚乳在整个种子发育过程中一直存在。在绘制了登录号ZB306和ZB107之间的多态性SNP位点后,我们产生了来自相互杂交的F1杂种种子的深测序RNA图谱。使用多态性SNP位点定量等位基因特异性表达水平,我们在潜在胚乳特异性表达的互作胚乳中鉴定了209个基因,包括200个母体表达基因和9个父体表达基因。总共有57个印迹基因通过逆转录酶-聚合酶链反应测序得到了验证,对胚胎和胚乳组织之间的基因组DNA甲基化分布的分析表明,胚乳中存在明显的低甲基化,并且在鉴定出的基因周围存在差异化的甲基化区域。奇怪的是,印迹基因的表达与DNA甲基化没有紧密联系。这些结果大大扩展了植物中存在的基因印迹信息,为基因印迹的进一步研究提供了潜在的方向

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