Department of General Genetics, Center for Plant Molecular Biology (ZMBP), University of Tübingen, Auf der Morgenstelle 32, 72076, Tübingen, Germany.
Department of Molecular Biology, Max Planck Institute for Developmental Biology, Spemannstraße 35, 72076, Tübingen, Germany.
Nat Plants. 2017 Sep;3(9):742-748. doi: 10.1038/s41477-017-0005-9. Epub 2017 Aug 28.
The non-random three-dimensional organization of genomes is critical for many cellular processes. Recently, analyses of genome-wide chromatin packing in the model dicot plant Arabidopsis thaliana have been reported . At a kilobase scale, the A. thaliana chromatin interaction network is highly correlated with a range of genomic and epigenomic features . Surprisingly, topologically associated domains (TADs), which appear to be a prevalent structural feature of genome packing in many animal species, are not prominent in the A. thaliana genome . Using a genome-wide chromatin conformation capture approach, Hi-C (ref. ), we report high-resolution chromatin packing patterns of another model plant, rice. We unveil new structural features of chromatin organization at both chromosomal and local levels compared to A. thaliana, with thousands of distinct TADs that cover about a quarter of the rice genome. The rice TAD boundaries are associated with euchromatic epigenetic marks and active gene expression, and enriched with a sequence motif that can be recognized by plant-specific TCP proteins. In addition, we report chromosome decondensation in rice seedlings undergoing cold stress, despite local chromatin packing patterns remaining largely unchanged. The substantial variation found already in a comparison of two plant species suggests that chromatin organization in plants might be more diverse than in multicellular animals.
基因组的非随机三维组织对于许多细胞过程至关重要。最近,对模式双子叶植物拟南芥的全基因组染色质包装的分析已经有报道。在千碱基尺度上,拟南芥染色质相互作用网络与一系列基因组和表观基因组特征高度相关。令人惊讶的是,拓扑关联域(TADs),似乎是许多动物物种中基因组包装的普遍结构特征,在拟南芥基因组中并不明显。使用全基因组染色质构象捕获方法 Hi-C(参考文献),我们报告了另一种模式植物水稻的高分辨率染色质包装模式。与拟南芥相比,我们揭示了在染色体和局部水平上染色质组织的新结构特征,有数千个独特的 TAD 覆盖了大约四分之一的水稻基因组。水稻 TAD 边界与常染色质的表观遗传标记和活跃的基因表达相关,并富含可以被植物特异性 TCP 蛋白识别的序列基序。此外,我们报告了水稻幼苗在冷胁迫下的染色体解凝聚,尽管局部染色质包装模式基本保持不变。在对两种植物的比较中发现的大量差异表明,植物中的染色质组织可能比多细胞动物更加多样化。