Department of Plant Sciences, University of Cambridge, Cambridge CB2 3EA, United Kingdom.
School of Biosciences, University of Birmingham, Birmingham B15 2TT, United Kingdom.
Plant Cell. 2020 Apr;32(4):1218-1239. doi: 10.1105/tpc.19.00866. Epub 2020 Feb 5.
Meiosis recombines genetic variation and influences eukaryote genome evolution. During meiosis, DNA double-strand breaks (DSBs) enter interhomolog repair to yield crossovers and noncrossovers. DSB repair occurs as replicated sister chromatids are connected to a polymerized axis. Cohesin rings containing the REC8 kleisin subunit bind sister chromatids and anchor chromosomes to the axis. Here, we report the genomic landscape of REC8 using chromatin immunoprecipitation sequencing (ChIP-seq) in Arabidopsis (). REC8 associates with regions of high nucleosome occupancy in multiple chromatin states, including histone methylation at H3K4 (expressed genes), H3K27 (silent genes), and H3K9 (silent transposons). REC8 enrichment is associated with suppression of meiotic DSBs and crossovers at the chromosome and fine scales. As REC8 enrichment is greatest in transposon-dense heterochromatin, we repeated ChIP-seq in H3K9me2 mutants. Surprisingly, REC8 enrichment is maintained in heterochromatin and no defects in centromeric cohesion were observed. REC8 occupancy within genes anti-correlates with transcription and is reduced in transposons that reactivate expression in Abnormal axis structures form in that recruit DSB-associated protein foci and undergo synapsis, which is followed by chromosome fragmentation. Therefore, REC8 occupancy correlates with multiple chromatin states and is required to organize meiotic chromosome architecture and interhomolog recombination.
减数分裂重组遗传变异并影响真核生物基因组进化。在减数分裂过程中,DNA 双链断裂 (DSB) 进入同源修复以产生交叉和非交叉。DSB 修复发生在复制的姐妹染色单体连接到聚合轴时。含有 REC8 连接酶亚基的黏合蛋白环结合姐妹染色单体并将染色体锚定到轴上。在这里,我们使用染色质免疫沉淀测序 (ChIP-seq) 在拟南芥中报告了 REC8 的基因组图谱()。REC8 与多种染色质状态下高核小体占有率的区域相关联,包括 H3K4(表达基因)、H3K27(沉默基因)和 H3K9(沉默转座子)处的组蛋白甲基化。REC8 富集与染色体和精细尺度上减数分裂 DSB 和交叉的抑制相关。由于 REC8 富集在转座子密集的异染色质中最大,我们在 H3K9me2 突变体中重复了 ChIP-seq。令人惊讶的是,REC8 富集在异染色质中得以维持,并且在着丝粒凝聚中没有观察到缺陷。REC8 在基因内的占有率与转录呈负相关,并且在重新激活表达的转座子中减少,在 中,异常轴结构形成,招募 DSB 相关蛋白焦点并进行联会,随后发生染色体碎裂。因此,REC8 占有率与多种染色质状态相关联,并且是组织减数分裂染色体结构和同源重组所必需的。