Department of Molecular Biology and Biochemistry (MBB), Simon Fraser University, 8888 University Dr, Burnaby BC V5A 1S6 and.
Dept. of Biology, York University, Toronto ON, M3J 1P3, Canada.
G3 (Bethesda). 2019 May 7;9(5):1581-1595. doi: 10.1534/g3.119.0003.
A large portion of the genome is contained within heterochromatic regions of chromosomes, predominantly at centromeres and telomeres. The remaining euchromatic portions of the genome have been extensively characterized with respect to gene organization, function and regulation. However, it has been difficult to derive similar data for sequences within centromeric (centric) heterochromatin because these regions have not been as amenable to analysis by standard genetic and molecular tools. Here we present an updated genetic and molecular analysis of chromosome 3L centric heterochromatin (3L Het). We have generated and characterized a number of new, overlapping deficiencies (Dfs) which remove regions of 3L Het. These Dfs were critically important reagents in our subsequent genetic analysis for the isolation and characterization of lethal point mutations in the region. The assignment of these mutations to genetically-defined essential loci was followed by matching them to gene models derived from genome sequence data: this was done by using molecular mapping plus sequence analysis of mutant alleles, thereby aligning genetic and physical maps of the region. We also identified putative essential gene sequences in 3L Het by using RNA interference to target candidate gene sequences. We report that at least 25, or just under 2/3 of loci in 3L Het, are essential for viability and/or fertility. This work contributes to the functional annotation of centric heterochromatin in , and the genetic and molecular tools generated should help to provide important insights into the organization and functions of gene sequences in 3L Het.
基因组的很大一部分包含在染色体的异染色质区域内,主要位于着丝粒和端粒处。基因组的其余常染色质部分在基因组织、功能和调控方面已经得到了广泛的研究。然而,由于这些区域不易用标准的遗传和分子工具进行分析,因此很难为着丝粒(centric)异染色质内的序列获得类似的数据。在这里,我们展示了对 3L 染色体着丝粒异染色质(3L Het)的更新遗传和分子分析。我们生成并表征了一些新的、重叠的缺失(Dfs),这些缺失去除了 3L Het 的区域。这些 Dfs 是我们随后在该区域中分离和鉴定致死点突变的遗传分析中的关键试剂。这些突变被分配到遗传定义的必需基因座,然后将它们与源自基因组序列数据的基因模型进行匹配:这是通过使用分子图谱加上突变等位基因的序列分析来完成的,从而对齐了该区域的遗传和物理图谱。我们还通过靶向候选基因序列的 RNA 干扰,在 3L Het 中鉴定了推定的必需基因序列。我们报告说,至少有 25 个或不到 3L Het 中三分之二的基因座对生存力和/或生育力是必需的。这项工作有助于对 中的着丝粒异染色质进行功能注释,生成的遗传和分子工具应该有助于深入了解 3L Het 中基因序列的组织和功能。