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Oxygen availability strongly affects chronological lifespan and thermotolerance in batch cultures of Saccharomyces cerevisiae

机译:酿酒酵母分批培养中的氧气供应量会严重影响其时间寿命和耐热性

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摘要

Stationary-phase (SP) batch cultures of Saccharomyces cerevisiae, in which growth has been arrested by carbon-source depletion, are widely applied to study chronological lifespan, quiescence and SP-associated robustness. Based on this type of experiments, typically performed under aerobic conditions, several roles of oxygen in aging have been proposed. However, SP in anaerobic yeast cultures has not been investigated in detail. Here, we use the unique capability of S. cerevisiae to grow in the complete absence of oxygen to directly compare SP in aerobic and anaerobic bioreactor cultures. This comparison revealed strong positive effects of oxygen availability on adenylate energy charge, longevity and thermotolerance during SP. A low thermotolerance of anaerobic batch cultures was already evident during the exponential growth phase and, in contrast to the situation in aerobic cultures, was not substantially increased during transition into SP. A combination of physiological and transcriptome analysis showed that the slow post-diauxic growth phase on ethanol, which precedes SP in aerobic, but not in anaerobic cultures, endowed cells with the time and resources needed for inducing longevity and thermotolerance. When combined with literature data on acquisition of longevity and thermotolerance in retentostat cultures, the present study indicates that the fast transition from glucose excess to SP in anaerobic cultures precludes acquisition of longevity and thermotolerance. Moreover, this study demonstrates the importance of a preceding, calorie-restricted conditioning phase in the acquisition of longevity and stress tolerance in SP yeast cultures, irrespective of oxygen availability.
机译:酿酒酵母的固定相(SP)分批培养已被碳源耗竭所阻止,其生长已广泛用于研究时间寿命,静止和与SP相关的稳健性。基于通常在有氧条件下进行的这类实验,提出了氧气在衰老中的几种作用。但是,厌氧酵母培养物中的SP尚未得到详细研究。在这里,我们利用酿酒酵母在完全没有氧气的情况下生长的独特能力,直接比较有氧和厌氧生物反应器培养物中的SP。该比较表明,在SP期间,氧气供应量对腺苷酸能量电荷,寿命和耐热性具有强烈的积极影响。厌氧分批培养物的低耐热性在指数生长期已经很明显,并且与有氧培养物的情况相反,在向SP过渡期间并未显着提高。生理学和转录组分析的结合表明,在乙醇中,diauxic后生长缓慢,在有氧培养中先于SP,但在无氧培养中却没有,这赋予了细胞诱导寿命和耐热性所需的时间和资源。当与有关在稳压器培养物中获得长寿和耐热性的文献数据相结合时,本研究表明在厌氧培养物中从葡萄糖过量向SP的快速转变排除了长寿和耐热性的获得。此外,这项研究证明了在之前的,限制卡路里的调理阶段在SP酵母培养物中获得长寿和胁迫耐受性的重要性,而与氧气的可用性无关。

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