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The effects of Arabidopsis genome duplication on the chromatin organization and transcriptional regulation

机译:拟南芥基因组复制对染色质组织和转录调控的影响

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Autopolyploidy is widespread in higher plants and important for agricultural yield and quality. However, the effects of genome duplication on the chromatin organization and transcriptional regulation are largely unknown in plants. Using High-throughput Chromosome Conformation Capture (Hi-C), we showed that autotetraploid Arabidopsis presented more inter-chromosomal interactions and fewer short-range chromatin interactions compared with its diploid progenitor. In addition, genome duplication contributed to the switching of some loose and compact structure domains with altered H3K4me3 and H3K27me3 histone modification status. 539 genes were identified with altered transcriptions and chromatin interactions in autotetraploid Arabidopsis. Especially, we found that genome duplication changed chromatin looping and H3K27me3 histone modification in Flowering Locus C. We propose that genome doubling modulates the transcription genome-wide by changed chromatin interactions and at the specific locus by altered chromatin loops and histone modifications.
机译:同源多倍体在高等植物中广泛存在,对于农业产量和质量至关重要。然而,在植物中基因组复制对染色质组织和转录调控的影响在很大程度上是未知的。使用高通量染色体构象捕获(Hi-C),我们显示与四倍体祖细胞相比,同源四倍体拟南芥呈现出更多的染色体间相互作用和更少的短距离染色质相互作用。此外,基因组复制有助于改变H3K4me3和H3K27me3组蛋白修饰状态的一些松散和紧凑的结构域。在同源四倍体拟南芥中鉴定了539个具有转录和染色质相互作用改变的基因。特别是,我们发现基因组重复改变了开花基因座C中的染色质环和H3K27me3组蛋白修饰。我们提出基因组倍增通过改变染色质相互作用和在特定基因座上通过改变染色质环和组蛋白修饰来调节全基因组转录。

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