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Activation of transposable elements and genetic instability during long-term culture of the human fungal pathogen Candida albicans

机译:在人真菌病原体念珠菌的长期培养过程中的转移元素和遗传不稳定性的激活

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It has been repeatedly reported that transposable elements (TE) become active and/or mobile in the genomes of replicatively and stress-induced senescent mammalian cells. However, the biological role of senescence-associated transposon activation and its occurrence and relevance in other eukaryotic cells remain to be elucidated. In the present study, Candida albicans, a prevalent opportunistic fungal pathogen in humans, was used to analyze changes in gene copy number of selected TE, namely Cirt2, Moa and Cmut1 during long-term culture (up to 90days). The effects of stress stimuli (fluconazole, hydrogen peroxide, hypochlorite) and ploidy state (haploid, diploid, tetraploid cells) were also considered. An increase in copy number of Cirt2 and Moa was the most accented in tetraploid cells after 90days of culture that was accompanied by changes in karyotype patterns and slightly more limited growth rate compared to haploid and diploid cells. Stress stimuli did not potentiate TE activity. Elevation in chromosomal DNA breaks was also observed during long-term culture of cells of different ploidy, however this was not correlated with increased TE activity. Our results suggest that increased TE activity may promote genomic diversity and plasticity, and cellular heterogeneity during long-term culture of C. albicans cells.
机译:已经反复报道,转换元件(TE)在复杂和应力诱导的衰老哺乳动物细胞的基因组中变得活跃和/或移动。然而,衰老相关的转座子活化的生物学作用及其在其他真核细胞中的发生和相关性仍然阐明。在本研究中,念珠菌白醛人是人类流行的机会性真菌病原体,用于分析长期培养期间所选TE,即CiRT2,MOA和CMUT1的基因拷贝数的变化(最多90天)。还考虑了应激刺激(氟康唑,过氧化氢,次氯酸盐)和倍增性状态(单倍体,二倍体,四倍体细胞)的影响。循环拷贝数和MOA的增加是在90天的培养后的四倍体细胞中最重视,其伴有核型模式的变化和与单倍体和二倍体细胞相比稍微更有限的生长速率。压力刺激没有强化TE活动。在不同倍率的细胞的长期培养期间也观察到染色体DNA断裂的升高,但是这种情况与CE活性增加不相关。我们的研究结果表明,在C. albicans细胞的长期培养期间,TE活性增加可能促进基因组多样性和可塑性和细胞异质性。

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