Department of Plant and Microbial Biology, North Carolina State University, Raleigh, North Carolina 27695
Texas Advanced Computing Center, University of Texas, Austin, Texas 78758.
Plant Cell. 2017 Sep;29(9):2126-2149. doi: 10.1105/tpc.17.00037. Epub 2017 Aug 25.
All plants and animals must replicate their DNA, using a regulated process to ensure that their genomes are completely and accurately replicated. DNA replication timing programs have been extensively studied in yeast and animal systems, but much less is known about the replication programs of plants. We report a novel adaptation of the "Repli-seq" assay for use in intact root tips of maize () that includes several different cell lineages and present whole-genome replication timing profiles from cells in early, mid, and late S phase of the mitotic cell cycle. Maize root tips have a complex replication timing program, including regions of distinct early, mid, and late S replication that each constitute between 20 and 24% of the genome, as well as other loci corresponding to ∼32% of the genome that exhibit replication activity in two different time windows. Analyses of genomic, transcriptional, and chromatin features of the euchromatic portion of the maize genome provide evidence for a gradient of early replicating, open chromatin that transitions gradually to less open and less transcriptionally active chromatin replicating in mid S phase. Our genomic level analysis also demonstrated that the centromere core replicates in mid S, before heavily compacted classical heterochromatin, including pericentromeres and knobs, which replicate during late S phase.
所有动植物都必须复制其 DNA,利用受调控的过程确保基因组完全且准确地复制。在酵母和动物系统中,对 DNA 复制时间规划进行了广泛研究,但对植物的复制规划知之甚少。我们报告了一种新颖的适应方法,可用于玉米()完整的根尖,该方法包括几种不同的细胞谱系,并提供了有丝分裂细胞周期的早期、中期和晚期 S 期细胞的全基因组复制时间图谱。玉米根尖具有复杂的复制时间规划,包括明显的早期、中期和晚期 S 复制区域,每个区域占基因组的 20%到 24%,以及其他对应于基因组约 32%的位点,这些位点在两个不同的时间窗口中表现出复制活性。对玉米基因组常染色质部分的基因组、转录组和染色质特征的分析提供了证据,证明存在一个从早期复制、开放染色质逐渐过渡到中期 S 期复制的染色质特征,其逐渐变得不那么开放,转录活性也更低。我们的基因组水平分析还表明,着丝粒核心在中期 S 期复制,在高度浓缩的经典异染色质(包括着丝粒和结)之前复制,后者在晚期 S 期复制。