Maggert Keith A
Department of Biology, Texas A&M University, College Station, Texas 77843-3258.
G3 (Bethesda). 2014 Mar 20;4(3):497-507. doi: 10.1534/g3.113.008730.
The ribosomal DNA (rDNA) arrays are causal agents in X-Y chromosome pairing in meiosis I of Drosophila males. Despite broad variation in X-linked and Y-linked rDNA copy number, polymorphisms in regulatory/spacer sequences between rRNA genes, and variance in copy number of interrupting R1 and R2 retrotransposable elements, there is little evidence that different rDNA arrays affect pairing efficacy. I investigated whether induced rDNA copy number polymorphisms affect chromosome pairing in a "competitive" situation in which complex pairing configurations were possible using males with XYY constitution. Using a common normal X chromosome, one of two different full-length Y chromosomes, and a third chromosome from a series of otherwise-isogenic rDNA deletions, I detected no differences in X-Y or Y-Y pairing or chromosome segregation frequencies that could not be attributed to random variation alone. This work was performed in the context of an undergraduate teaching program at Texas A&M University, and I discuss the pedagogical utility of this and other such experiments.
核糖体DNA(rDNA)阵列是果蝇雄性减数分裂I中X-Y染色体配对的致病因素。尽管X连锁和Y连锁的rDNA拷贝数存在广泛差异,rRNA基因之间调控/间隔序列存在多态性,以及中断R1和R2逆转座子元件的拷贝数存在差异,但几乎没有证据表明不同的rDNA阵列会影响配对效率。我研究了在一种“竞争”情况下,诱导的rDNA拷贝数多态性是否会影响染色体配对,在这种情况下,使用具有XYY组成的雄性可能会出现复杂的配对构型。使用一条常见的正常X染色体、两条不同全长Y染色体中的一条,以及一系列其他等基因rDNA缺失的第三条染色体,我没有检测到X-Y或Y-Y配对或染色体分离频率的差异,这些差异不能仅归因于随机变异。这项工作是在德克萨斯A&M大学的本科教学项目背景下进行的,我讨论了这个以及其他此类实验的教学效用。