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首页> 外文期刊>FEMS Yeast Research >Phylogenetic relationship and Fourier-transform infrared spectroscopy-derived lipid determinants of lifespan parameters in the Saccharomyces cerevisiae yeast
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Phylogenetic relationship and Fourier-transform infrared spectroscopy-derived lipid determinants of lifespan parameters in the Saccharomyces cerevisiae yeast

机译:酿酒酵母酿酒酵母中寿命参数的系统发育关系与傅里叶变异红外光谱衍生的脂质决定因素

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摘要

Yeast ageing has been gaining much attention in gerontology research, yet the process itself is still not entirely clear. One of the constraints related to the use of the Saccharomyces cerevisiae yeast in studies is the ambiguity of the results concerning ageing determinants for different genetic backgrounds. In this paper, we compare reproductive potentials and lifespans of seven widely used haploid laboratory strains differing in daughter cells production capabilities and highlight the importance of choosing an appropriate genotype for the studies on ageing. Moreover, we show here links between post-reproductive lifespan and lipid metabolism, as well as between reproductive potential, reproductive lifespan and phylogenetic relationship. Using FTIR spectroscopy that generated a biochemical fingerprint of cells, coupled with chemometrics, we found that the band of carbonyl (C = O) stretching vibration discriminates the strains according to post-reproductive lifespan. The results indicated that prolonged post-reproductive lifespan was associated with relatively lower amount of fatty acids esterified to phospholipids compared to a free acid pool, thus implying phospholipid metabolism for the post-reproductive lifespan of yeast. In addition, phylogenetic analysis showed a correlation between nucleotide similarity and the reproductive potential or reproductive lifespan, but not to the longevity expressed in time units.
机译:酵母老化在长期性研究中都有很大的关注,但过程本身仍然不完全清楚。与使用酿酒酵母酵母酵母在研究中有关的限制之一是关于不同遗传背景的老化决定簇的结果的模糊性。在本文中,我们比较七种广泛使用的单倍体实验室菌株的生殖潜力和寿命,不同于女儿细胞的生产能力,并突出了为老化研究选择合适的基因型的重要性。此外,我们展示了后期生殖寿命和脂质代谢之间的链接,以及生殖潜力,生殖寿命和系统发育关系。使用产生细胞生物化学指纹的FTIR光谱,我们发现羰基(C = O)拉伸振动的带根据繁殖后的寿命来区分菌株。结果表明,与游离酸池相比,延长后生殖寿命与磷脂含量相对较低的脂肪酸相关,从而暗示酵母后生殖寿命的磷脂代谢。此外,系统发育分析显示核苷酸相似性与生殖潜力或生殖寿命之间的相关性,但不是时间单位表达的寿命。

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