首页> 外文期刊>Journal of the American Society of Brewing Chemists >Aeration Prior to Pitching Increases Intracellular Enzymatic and Transcriptional Responses Under Nonnutritional Conditions
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Aeration Prior to Pitching Increases Intracellular Enzymatic and Transcriptional Responses Under Nonnutritional Conditions

机译:投球前的通气会增加非营养条件下的细胞内酶和转录反应

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Appropriate aeration of bottom-fermenting yeast suspended in water increased subsequent yeast growth under anaerobic conditions and reduced the synthesis of volatile esters during the fermentation of wort, whereas the absence of, or excess, aeration had no effect on cell growth and ester synthesis. In an effort to elucidate some of the underlying cellular mechanisms triggered by aeration under nutrient-lacking conditions, we analyzed alterations in the expression of the hypoxic represser gene (ROX1). the expression of the Δ-9 fatty acid desaturase gene (OLE1), and the composition of cellular fatty acids. Our results show that higher ROX1 transcription levels resulted with increased aeration. However, OLE1 transcription levels initially were depressed but then increased with increased aeration. The ratio of unsaturated fatty acids to total fatty acid composition increased with increased aeration. Our results suggest that aeration of the yeast-containing medium, even under nutrient-lacking conditions, stimulated oxygen-signaling pathways. We also examined intracel-lular sugar consumption in response to aeration in the absence of nutrients in the medium by measuring intracellular trehalose levels. Trehalose levels decreased with increased aeration; however, excess aeration resulted in trehalose exhaustion but did not stimulate anaerobic growth or decrease the synthesis of volatile esters. Intracellular trehalose levels seem be a suitable index reflecting adequate levels of aeration for fermentation.
机译:悬浮在水中的底部发酵酵母的适当通气增加了随后在厌氧条件下酵母的生长,并降低了麦芽汁发酵过程中挥发性酯的合成,而缺乏或过量通气对细胞生长和酯合成没有影响。为了阐明在缺乏营养的条件下通气引发的一些潜在的细胞机制,我们分析了低氧阻遏物基因(ROX1)的表达变化。 Δ-9脂肪酸去饱和酶基因(OLE1)的表达以及细胞脂肪酸的组成。我们的结果表明较高的ROX1转录水平导致通气量增加。但是,OLE1转录水平最初被抑制,但随后随着通气量的增加而增加。随着充气的增加,不饱和脂肪酸与总脂肪酸组成的比例增加。我们的结果表明,即使在缺乏营养物的条件下,含酵母培养基的通气也会刺激氧气信号通路。我们还通过测量细胞内海藻糖水平,检查了培养基中营养缺乏时通气引起的细胞内糖消耗。海藻糖水平随着通气量的增加而降低;然而,过量的曝气导致海藻糖耗尽,但没有刺激厌氧生长或减少挥发性酯的合成。细胞内海藻糖水平似乎是反映发酵所需通气水平的合适指标。

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