College of Life Science and Agronomy, Zhoukou Normal University, Zhoukou, Henan 466001, China.
Key Laboratory of Plant Genetics and Molecular Breeding, Zhoukou Normal University, Zhoukou, Henan 466001, China.
Plant Cell Physiol. 2020 May 1;61(5):978-987. doi: 10.1093/pcp/pcaa026.
Eukaryotic chromatin is tightly packed into hierarchical structures, allowing appropriate gene transcription in response to environmental and developmental cues. Here, we provide a chromosome-scale de novo genome assembly of sesame with a total length of 292.3 Mb and a scaffold N50 of 20.5 Mb, containing estimated 28,406 coding genes using Pacific Biosciences long reads combined with a genome-wide chromosome conformation capture (Hi-C) approach. Based on this high-quality reference genome, we detected changes in chromatin architectures between normal growth and dark-treated sesame seedlings. Gene expression level was significantly higher in 'A' compartment and topologically associated domain (TAD) boundary regions than in 'B' compartment and TAD interior regions, which is coincident with the enrichment of H4K3me3 modification in these regions. Moreover, differentially expressed genes (DEGs) induced by dark treated were enriched in the changed TAD-related regions and genomic differential contact regions. Gene Ontology (GO) enrichment analysis of DEGs showed that genes related to 'response to stress' and 'photosynthesis' functional categories were enriched, which corresponds to dark treatment. These results suggested that chromatin organization is associated with gene transcription in response to dark treatment in sesame. Our results will facilitate the understanding of regulatory mechanisms in response to environmental cues in plants.
真核染色质被紧密包装成层次结构,允许在响应环境和发育线索时适当转录基因。在这里,我们使用太平洋生物科学公司的长读长结合全基因组染色体构象捕获(Hi-C)方法,提供了一个总长为 292.3Mb、支架 N50 为 20.5Mb 的芝麻从头基因组组装,其中包含估计的 28406 个编码基因。基于这个高质量的参考基因组,我们检测到正常生长和黑暗处理的芝麻幼苗之间染色质结构的变化。与 'B' 隔间和 TAD 内部区域相比,'A' 隔间和拓扑关联域(TAD)边界区域的基因表达水平显著更高,这与这些区域中 H4K3me3 修饰的富集一致。此外,黑暗处理诱导的差异表达基因(DEGs)富集在变化的 TAD 相关区域和基因组差异接触区域中。DEGs 的基因本体论(GO)富集分析表明,与 '应激反应' 和 '光合作用' 功能类别相关的基因富集,这与黑暗处理相对应。这些结果表明,染色质组织与芝麻对黑暗处理的基因转录有关。我们的结果将有助于理解植物对环境线索的调控机制。