Stowers Institute for Medical Research, Kansas City, Missouri 64110
Department of Pediatrics, Seattle Children's Hospital, University of Washington, Seattle, Washington 98105.
Genetics. 2018 Dec;210(4):1197-1212. doi: 10.1534/genetics.118.301478. Epub 2018 Sep 24.
The number of chromosomes carried by an individual species is one of its defining characteristics. Some species, however, can also carry supernumerary chromosomes referred to as B chromosomes. B chromosomes were recently identified in a laboratory stock of -an established model organism with a wealth of genetic and genomic resources-enabling us to subject them to extensive molecular analysis. We isolated the B chromosomes by pulsed-field gel electrophoresis and determined their composition through next-generation sequencing. Although these B chromosomes carry no known euchromatic sequence, they are rich in transposable elements and long arrays of short nucleotide repeats, the most abundant being the uncharacterized satellite repeat. Fluorescent hybridization on metaphase chromosome spreads revealed this repeat is located on chromosome , strongly suggesting the origin of the B chromosomes is chromosome Cytological and quantitative comparisons of signal intensity between chromosome and the B chromosomes supports the hypothesis that the structure of the B chromosome is an isochromosome. We also report the identification of a new B chromosome variant in a related laboratory stock. This B chromosome has a similar repeat signature as the original but is smaller and much less prevalent. We examined additional stocks with similar genotypes and did not find B chromosomes, but did find these stocks lacked the satellite repeat. Our molecular characterization of B chromosomes is the first step toward understanding how supernumerary chromosomes arise from essential chromosomes and what may be necessary for their stable inheritance.
个体携带的染色体数量是其特征之一。然而,有些物种还可以携带额外的染色体,称为 B 染色体。最近在一个实验室品系中发现了 B 染色体,这是一个已建立的模式生物,具有丰富的遗传和基因组资源,使我们能够对其进行广泛的分子分析。我们通过脉冲场凝胶电泳分离 B 染色体,并通过下一代测序确定其组成。尽管这些 B 染色体不携带已知的常染色体序列,但它们富含转座元件和长串短核苷酸重复序列,最丰富的是未鉴定的卫星重复序列。中期染色体扩散的荧光杂交表明,该重复序列位于染色体上,强烈表明 B 染色体的起源是染色体。染色体和 B 染色体之间信号强度的细胞学和定量比较支持 B 染色体结构是等臂染色体的假说。我们还报告了在一个相关的实验室品系中发现了一种新的 B 染色体变体。这个 B 染色体具有与原始染色体相似的重复特征,但较小且不太常见。我们检查了具有类似基因型的其他品系,但没有发现 B 染色体,但发现这些品系缺乏卫星重复序列。我们对 B 染色体的分子特征分析是理解额外染色体如何从必需染色体产生以及它们稳定遗传所需的条件的第一步。