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Sexual epigenetics: gender-specific methylation of a gene in the sex determining region of Populus balsamifera

机译:性表观遗传学:杨树杨树的性别决定区中基因的性别特异性甲基化

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Methylation has frequently been implicated in gender determination in plants. The recent discovery of the sex determining region (SDR) of balsam poplar, Populus balsamifera, pinpointed 13 genes with differentiated X and Y copies. We tested these genes for differential methylation using whole methylome sequencing of xylem tissue of multiple individuals grown under field conditions in two common gardens. The only SDR gene to show a marked pattern of gender-specific methylation is PbRR9, a member of the two component response regulator (type-A) gene family, involved in cytokinin signalling. It is an ortholog of Arabidopsis genes ARR16 and ARR17. The strongest patterns of differential methylation (mostly male-biased) are found in the putative promoter and the first intron. The 4th intron is strongly methylated in both sexes and the 5th intron is unmethylated in both sexes. Using a statistical learning algorithm we find that it is possible accurately to assign trees to gender using genome-wide methylation patterns alone. The strongest predictor is the region coincident with PbRR9, showing that this gene stands out against all genes in the genome in having the strongest sex-specific methylation pattern. We propose the hypothesis that PbRR9 has a direct, epigenetically mediated, role in poplar sex determination.
机译:甲基化经常涉及植物中的性别测定。最近发现Balsam Poplar,Populus Balsamifera的性别测定区域(SDR),用分化的X和Y拷贝定位了13个基因。我们通过在两个常见花园中的现场条件下种植的多个人的Xylem组织的全甲虫组织来测试这些基因进行差异甲基化。唯一的SDR基因表明性别特异性甲基化的标记图案是PBRR9,其两个组分响应调节剂(A型)基因家族的成员参与Cytokinin信号传导。它是Arabidopsis Genes Arr16和Arr17的矫形器。在推定的启动子和第一个内含子中发现了差分甲基化(大多是男性偏置)的最强模式。第四个内含子在两种性别中强烈甲基化,第5个内含子在两性中未被甲基化。使用统计学习算法,我们发现可以使用单独的基因组甲基化模式来准确地将树分配给性别。最强的预测因子是与PBRR9重合的地区,表明该基因突出了具有最强性特异性甲基化模式的基因组中的所有基因。我们提出假设,即PBRR9具有直接,表观介导的,在杨树性别测定中的作用。

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