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Responses of saccharomyces cerevisiae strains from different origins to elevated iron concentrations.

机译:来自不同来源的酿酒酵母菌株对铁浓度升高的响应。

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摘要

Iron is an essential micronutrient for all eukaryotic organisms. However, the low solubility of ferric iron has tremendously increased the prevalence of iron deficiency anemia, especially in women and children, with dramatic consequences. Baker's yeast Saccharomyces cerevisiae is used as a model eukaryotic organism, a fermentative microorganism, and a feed supplement. In this report, we explore the genetic diversity of 123 wild and domestic strains of S. cerevisiae isolated from different geographical origins and sources to characterize how yeast cells respond to elevated iron concentrations in the environment. By using two different forms of iron, we selected and characterized both iron-sensitive and iron-resistant yeast strains. We observed that when the iron concentration in the medium increases, iron-sensitive strains accumulate iron more rapidly than iron-resistant isolates. We observed that, consistent with excess iron leading to oxidative stress, the redox state of iron-sensitive strains was more oxidized than that of iron-resistant strains. Growth assays in the presence of different oxidative reagents ruled out that this phenotype was due to alterations in the general oxidative stress protection machinery. It was noteworthy that iron-resistant strains were more sensitive to iron deficiency conditions than iron-sensitive strains, which suggests that adaptation to either high or low iron is detrimental for the opposite condition. An initial gene expression analysis suggested that alterations in iron homeostasis genes could contribute to the different responses of distant iron-sensitive and iron-resistant yeast strains to elevated environmental iron levels.
机译:铁是所有真核生物必不可少的微量营养素。然而,三价铁的低溶解度极大地增加了缺铁性贫血的患病率,特别是在妇女和儿童中,产生了严重的后果。贝克酵母啤酒酵母被用作模型真核生物,发酵微生物和饲料添加剂。在本报告中,我们探讨了从不同地理起源和来源分离的123株酿酒酵母的野生和家养菌株的遗传多样性,以表征酵母细胞如何响应环境中铁浓度的升高。通过使用两种不同形式的铁,我们选择并鉴定了铁敏感性和铁抗性酵母菌株。我们观察到,当培养基中的铁浓度增加时,对铁敏感的菌株比对耐铁的菌株更快地积累铁。我们观察到,与过量的铁导致氧化应激相一致,铁敏感菌株的氧化还原态比抗铁菌株的氧化态更强。在存在不同氧化剂的情况下进行的生长分析表明,该表型是由于一般氧化应激保护机制的改变所致。值得注意的是,抗铁菌株比缺铁敏感性菌株对缺铁条件更为敏感,这表明适应高铁或低铁对相反条件都是有害的。最初的基因表达分析表明,铁稳态基因的改变可能导致遥远的铁敏感和抗铁酵母菌株对环境铁水平升高的不同反应。

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