Institute of Molecular and Cellular Biology, SB RAS, Novosibirsk, Russia.
Novosibirsk State University, Novosibirsk, Russia.
PLoS One. 2018 Apr 16;13(4):e0195207. doi: 10.1371/journal.pone.0195207. eCollection 2018.
Morphologically, polytene chromosomes of Drosophila melanogaster consist of compact "black" bands alternating with less compact "grey" bands and interbands. We developed a comprehensive approach that combines cytological mapping data of FlyBase-annotated genes and novel tools for predicting cytogenetic features of chromosomes on the basis of their protein composition and determined the genomic coordinates for all black bands of polytene chromosome 2R. By a PCNA immunostaining assay, we obtained the replication timetable for all the bands mapped. The results allowed us to compare replication timing between polytene chromosomes in salivary glands and chromosomes from cultured diploid cell lines and to observe a substantial similarity in the global replication patterns at the band resolution level. In both kinds of chromosomes, the intervals between black bands correspond to early replication initiation zones. Black bands are depleted of replication initiation events and are characterized by a gradient of replication timing; therefore, the time of replication completion correlates with the band length. The bands are characterized by low gene density, contain predominantly tissue-specific genes, and are represented by silent chromatin types in various tissues. The borders of black bands correspond well to the borders of topological domains as well as to the borders of the zones showing H3K27me3, SUUR, and LAMIN enrichment. In conclusion, the characteristic pattern of polytene chromosomes reflects partitioning of the Drosophila genome into two global types of domains with contrasting properties. This partitioning is conserved in different tissues and determines replication timing in Drosophila.
从形态学上看,黑腹果蝇的多线染色体由紧密的“黑”带与不太紧密的“灰”带和带间区交替组成。我们开发了一种综合方法,结合了 FlyBase 注释基因的细胞学图谱数据和基于其蛋白质组成预测染色体细胞遗传学特征的新工具,并确定了多线染色体 2R 的所有黑带的基因组坐标。通过 PCNA 免疫染色测定,我们获得了所有映射带的复制时间表。这些结果使我们能够比较唾腺多线染色体和培养的二倍体细胞系染色体之间的复制时间,并在带分辨率水平上观察到全局复制模式的实质性相似性。在这两种染色体中,黑带之间的间隔对应于早期复制起始区。黑带缺乏复制起始事件,其特征是复制时间的梯度;因此,复制完成的时间与带的长度相关。这些带的基因密度低,包含主要是组织特异性基因,并在各种组织中表现为沉默染色质类型。黑带的边界与拓扑结构域的边界以及 H3K27me3、SUUR 和 LAMIN 富集区的边界很好地对应。总之,多线染色体的特征模式反映了果蝇基因组分为两种具有相反特性的全局类型的域。这种分区在不同的组织中是保守的,并决定了果蝇的复制时间。