Hijri Mohamed, Niculita Hélène, Sanders Ian R
Department of Ecology and Evolution, Biology Building, University of Lausanne, 1015 Lausanne, Switzerland.
Fungal Genet Biol. 2007 Dec;44(12):1380-6. doi: 10.1016/j.fgb.2007.03.004. Epub 2007 Mar 27.
The minimum chromosome number of Glomus intraradices was assessed through cloning and sequencing of the highly divergent telomere-associated sequences (TAS) and by pulsed field gel electrophoresis (PFGE). The telomere of G. intraradices, as in other filamentous fungi, consists of TTAGGG repeats, this was confirmed using Bal31 nuclease time course reactions. Telomere length was estimated to be roughly 0.9 kb by Southern blots on genomic DNA and a telomere probe. We have identified six classes of cloned chromosomal termini based on the TAS. An unusually high genetic variation was observed within two of the six TAS classes. To further assess the total number of chromosome termini, we used telomere fingerprinting. Surprisingly, all hybridization patterns showed smears, which demonstrate that TAS are remarkably variable in the G. intraradices genome. These analyses predict the presence of at least three chromosomes in G. intraradices while PFGE showed a pattern of four bands ranging from 1.2 to 1.5 Mb. Taken together, our results indicate that there are at least four chromosomes in G. intraradices but there are probably more. The information on TAS and telomeres in the G. intradicies will be essential for making a physical map of the G. intraradices genome and could provide molecular markers for future studies of genetic variation among nuclei in these multigenomic fungi.
通过对高度分化的端粒相关序列(TAS)进行克隆和测序以及脉冲场凝胶电泳(PFGE),评估了根内球囊霉的最小染色体数。与其他丝状真菌一样,根内球囊霉的端粒由TTAGGG重复序列组成,这通过Bal31核酸酶时间进程反应得到了证实。通过对基因组DNA和端粒探针进行Southern印迹分析,估计端粒长度约为0.9 kb。基于TAS,我们鉴定出了六类克隆的染色体末端。在六个TAS类别中的两个类别中观察到了异常高的遗传变异。为了进一步评估染色体末端的总数,我们使用了端粒指纹图谱。令人惊讶的是,所有杂交模式均显示出拖尾现象,这表明TAS在根内球囊霉基因组中具有显著的变异性。这些分析预测根内球囊霉中至少存在三条染色体,而PFGE显示出四条带的模式,大小范围为1.2至1.5 Mb。综合来看,我们的结果表明根内球囊霉中至少有四条染色体,但可能更多。根内球囊霉中TAS和端粒的信息对于构建根内球囊霉基因组的物理图谱至关重要,并且可以为这些多基因组真菌中细胞核间遗传变异的未来研究提供分子标记。