School of Biological Sciences and Center for Cell and Genome Sciences, University of Utah, 257 South 1400 East, Salt Lake City, UT, 84112-0840, USA.
The Division of Biology & Biomedical Sciences, Washington University in St. Louis, 660 South Euclid Avenue, Missouri, 63110, USA.
Chromosoma. 2021 Dec;130(4):237-250. doi: 10.1007/s00412-021-00763-y. Epub 2021 Oct 4.
Alignment of the parental chromosomes during meiotic prophase is key to the formation of genetic exchanges, or crossovers, and consequently to the successful production of gametes. In almost all studied organisms, alignment involves synapsis: the assembly of a conserved inter-chromosomal interface called the synaptonemal complex (SC). While the SC usually synapses homologous sequences, it can assemble between heterologous sequences. However, little is known about the regulation of heterologous synapsis. Here, we study the dynamics of heterologous synapsis in the nematode C. elegans. We characterize two experimental scenarios: SC assembly onto a folded-back chromosome that cannot pair with its homologous partner; and synapsis of pseudo-homologs, a fusion chromosome partnering with an unfused chromosome half its size. We observed elevated levels of heterologous synapsis when the number of meiotic double-strand breaks or crossovers were reduced, indicating that the promiscuity of synapsis is regulated by break formation or repair. In addition, our data suggests the existence of both chromosome-specific and nucleus-wide regulation on heterologous synapsis.
在减数分裂前期,父母染色体的排列是形成遗传交换或交叉的关键,进而也是成功产生配子的关键。在几乎所有被研究的生物中,排列涉及联会:组装一个称为联会复合体(SC)的保守染色体间界面。虽然 SC 通常联会同源序列,但它也可以在异源序列之间组装。然而,对于异源联会的调控知之甚少。在这里,我们研究了线虫 C. elegans 中异源联会的动态。我们描述了两种实验情景:SC 组装到不能与其同源伴侣配对的折叠回染色体上;以及假同源体的联会,即与大小为其一半的未融合染色体配对的融合染色体。当减数分裂双链断裂或交叉的数量减少时,我们观察到异源联会水平升高,这表明联会的混杂性受到断裂形成或修复的调控。此外,我们的数据表明,异源联会存在染色体特异性和核范围的调节。