Galián José A, Rosato Marcela, Rosselló Josep A
Jardín Botánico, ICBiBE, Universidad de Valencia, c/Quart 80, E-46008, Valencia, Spain.
Jardín Botánico, ICBiBE, Universidad de Valencia, c/Quart 80, E-46008, Valencia, Spain Marimurtra Bot. Garden, Carl Faust Fdn, PO Box 112, E-17300 Blanes, Catalonia, Spain
Ann Bot. 2014 Aug;114(2):243-51. doi: 10.1093/aob/mcu115. Epub 2014 Jun 12.
Ribosomal sequences have become the classical example of the genomic homogenization of nuclear multigene families. Despite theoretical advantages and modelling predictions that support concerted evolution of the 45S rDNA, several reports have found intragenomic polymorphisms. However, the origins and causes of these rDNA polymorphisms are difficult to assess because seed plants show a wide range of 45S rDNA loci number variation, especially in polyploids. Medicago arborea is a tetraploid species that has a single 45S rDNA locus. This feature makes this species a suitable case study to assess the fate of ribosomal IGS homogenization in polyploid species showing nucleolus organizer region (NOR) reduction.
The intergenic spacer (IGS) region was amplified by long PCR and the fragments were cloned and sequenced by a primer-walking strategy. The physical mapping of the whole and partial IGS variants was assessed by fluorescent in situ hybridization (FISH) and fibre-FISH methods on mitotic chromosomes and extended DNA fibres, respectively.
Two IGS fragments of 4·8 and 3·5 kb were obtained showing structural features of functional sequences. The shorter variant appears to be a truncated copy of the 4·8 kb fragment that lacks the duplication of the transcription initiation site region and the entire D region. The physical localization of the two IGS variants on metaphase chromosomes and extended DNA fibres using FISH corroborated their joint presence within the same locus. In addition, no spatial structure of the two variants was detected within the NOR.
The results suggest that full sequence homogenization is not operating within the NOR locus of M. arborea. The structure of the NOR locus reported here departs from the models of IGS heterogeneity present in plants and caution against assuming the widespread belief that intragenomic ribosomal heterogeneity is mainly due to sequence variation between paralogous loci.
核糖体序列已成为核多基因家族基因组同质化的经典例子。尽管有理论优势和模型预测支持45S核糖体DNA(rDNA)的协同进化,但一些报告发现了基因组内的多态性。然而,这些rDNA多态性的起源和原因难以评估,因为种子植物显示出广泛的45S rDNA基因座数量变异,尤其是在多倍体中。木本苜蓿是一种四倍体物种,有一个单一的45S rDNA基因座。这一特征使该物种成为一个合适的案例研究对象,以评估在显示核仁组织区(NOR)减少的多倍体物种中核糖体间隔区(IGS)同质化的命运。
通过长链聚合酶链式反应(PCR)扩增基因间隔区(IGS)区域,并通过引物步移策略对片段进行克隆和测序。分别通过荧光原位杂交(FISH)和纤维FISH方法在有丝分裂染色体和延伸的DNA纤维上评估完整和部分IGS变体的物理图谱。
获得了两个分别为4.8 kb和3.5 kb的IGS片段,显示出功能序列的结构特征。较短的变体似乎是4.8 kb片段的截短拷贝,缺少转录起始位点区域的重复和整个D区域。使用FISH对两个IGS变体在中期染色体和延伸的DNA纤维上进行物理定位,证实了它们在同一基因座内的共同存在。此外,在NOR内未检测到两个变体的空间结构。
结果表明,在木本苜蓿的NOR基因座内并未发生完全的序列同质化。本文报道的NOR基因座结构与植物中存在的IGS异质性模型不同,并且提醒不要假定普遍认为的基因组内核糖体异质性主要是由于旁系同源基因座之间的序列变异。