Biology Department, Washington University, Saint Louis, Missouri, United States of America.
PLoS One. 2007 Aug 29;2(8):e815. doi: 10.1371/journal.pone.0000815.
The silencing of one parental set of rRNA genes in a genetic hybrid is an epigenetic phenomenon known as nucleolar dominance. We showed previously that silencing is restricted to the nucleolus organizer regions (NORs), the loci where rRNA genes are tandemly arrayed, and does not spread to or from neighboring protein-coding genes. One hypothesis is that nucleolar dominance is the net result of hundreds of silencing events acting one rRNA gene at a time. A prediction of this hypothesis is that rRNA gene silencing should occur independent of chromosomal location. An alternative hypothesis is that the regulatory unit in nucleolar dominance is the NOR, rather than each individual rRNA gene, in which case NOR localization may be essential for rRNA gene silencing. To test these alternative hypotheses, we examined the fates of rRNA transgenes integrated at ectopic locations. The transgenes were accurately transcribed in all independent transgenic Arabidopsis thaliana lines tested, indicating that NOR localization is not required for rRNA gene expression. Upon crossing the transgenic A. thaliana lines as ovule parents with A. lyrata to form F1 hybrids, a new system for the study of nucleolar dominance, the endogenous rRNA genes located within the A. thaliana NORs are silenced. However, rRNA transgenes escaped silencing in multiple independent hybrids. Collectively, our data suggest that rRNA gene activation can occur in a gene-autonomous fashion, independent of chromosomal location, whereas rRNA gene silencing in nucleolar dominance is locus-dependent.
一对亲本 rRNA 基因在遗传杂种中的沉默是一种称为核仁优势的表观遗传现象。我们之前表明,沉默仅限于核仁组织区域(NORs),即 rRNA 基因串联排列的位置,不会从 NOR 扩散到或扩散到邻近的蛋白质编码基因。一种假设是核仁优势是数百个沉默事件一次作用于一个 rRNA 基因的净结果。该假设的一个预测是,rRNA 基因沉默应该独立于染色体位置发生。另一种假设是,核仁优势中的调节单元是 NOR,而不是每个单独的 rRNA 基因,在这种情况下,NOR 定位对于 rRNA 基因沉默可能是必不可少的。为了检验这些替代假设,我们检查了整合在异位位置的 rRNA 转基因的命运。在所有测试的独立转基因拟南芥系中,转基因均被准确转录,表明 NOR 定位不是 rRNA 基因表达所必需的。当将转基因拟南芥系作为胚珠亲本与 A. lyrata 杂交形成 F1 杂种时,形成了一个研究核仁优势的新系统,位于拟南芥 NOR 内的内源性 rRNA 基因被沉默。然而,rRNA 转基因在多个独立的杂种中逃脱了沉默。总之,我们的数据表明 rRNA 基因的激活可以以基因自主的方式发生,而与染色体位置无关,而核仁优势中的 rRNA 基因沉默是依赖于基因座的。