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首页> 外文期刊>Genetics and Molecular Research >Dynamics of 45S rDNA sites in the cell cycle: fragile sites and chromosomal stability in Lolium and Festuca
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Dynamics of 45S rDNA sites in the cell cycle: fragile sites and chromosomal stability in Lolium and Festuca

机译:45S rDNA位点在细胞周期中的动态:黑麦草和Festuca中的脆弱位点和染色体稳定性

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Analyses carried out with fluorescence in situ hybridization (FISH) in C-metaphases of the Lolium-Festuca complex have shown the occurrence of spontaneous fragile sites (FSs) in 45S rDNA regions. FSs are expressed as gaps but they do not result in breaks or chromosomal fragments in these species. These gaps have high DNA condensation observed as thin chromatin fibers that connect the apparent segments of the fragile chromosome, allowing for genomic stability. Assessing the behavior of these regions in the cell cycle of Lolium and Festuca species may lead to a better understanding of the dynamics that preserve stability during cell division. Furthermore, it is interesting to track the dynamics of chromosomes bearing 45S rDNA sites in the cell cycle as well as to observe the expression of FSs with no effect of the mitotic block. We observed variation in both the number and size of 45S FISH signals from the S/G2 phases of interphase and from prophase to anaphase where gaps in 45S rDNA sites also were observed. The change in the degree of condensation of the 45S site begins in the S/G2 phase and appears to be related to the transcriptional demand. Taking into account that the number of 45S rDNA sites tends to be re-established when cells reach telophase, we suggest that the chromatin fiber goes back to the normal condensation level to the anaphase (after segregation), allowing for the approximation of chromosome segments and ensuring dynamics that favor the genomic stability of these species.
机译:用荧光原位杂交(FISH)在黑麦草-雌木复合体的C-中期进行的分析表明,在45S rDNA区域中存在自发的脆弱位点(FSs)。 FS表示为缺口,但它们不会导致这些物种中的断裂或染色体片段。这些缺口具有很高的DNA浓缩度,观察到的是像薄的染色质纤维那样连接脆弱的染色体的明显片段,从而实现了基因组稳定性。评估黑麦草和Festuca物种在细胞周期中这些区域的行为可能会导致人们更好地了解在细胞分裂过程中保持稳定性的动力学。此外,有趣的是在细胞周期中跟踪带有45S rDNA位点的染色体的动力学,以及观察FS的表达而无丝分裂阻滞作用。我们观察到从相间的S / G2期以及从前期到后期的45S FISH信号的数量和大小都有变化,在45S rDNA位点也观察到了缺口。 45S位点缩合度的变化始于S / G2相,并且似乎与转录需求有关。考虑到细胞到达末期时,倾向于重新建立45S rDNA位点的数量,因此我们建议染色质纤维返回到后期的正常缩合水平(分离后),从而可以近似染色体片段和确保动力学有利于这些物种的基因组稳定性。

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