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Copy number variations of genes involved in stress responses reflect the redox state and DNA damage in brewing yeasts

机译:涉及应激反应的基因的拷贝数变异反映了酿造酵母中的氧化还原状态和DNA损伤

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摘要

The yeast strains of the Saccharomyces sensu stricto complex involved in beer production are a heterogeneous group whose genetic and genomic features are not adequately determined. Thus, the aim of the present study was to provide a genetic characterization of selected group of commercially available brewing yeasts both ale top-fermenting and lager bottom-fermenting strains. Molecular karyotyping revealed that the diversity of chromosome patterns and four strains with the most accented genetic variabilities were selected and subjected to genome-wide array-based comparative genomic hybridization (array-CGH) analysis. The differences in the gene copy number were found in five functional gene categories: (1) maltose metabolism and transport, (2) response to toxin, (3) siderophore transport, (4) cellular aldehyde metabolic process, and (5) L-iditol 2-dehydrogenase activity (p < 0.05). In the Saflager W-34/70 strain (Fermentis) with the most affected array-CGH profile, loss of aryl-alcohol dehydrogenase (AAD) gene dosage correlated with an imbalanced redox state, oxidative DNA damage and breaks, lower levels of nucleolar proteins Nop1 and Fob1, and diminished tolerance to fermentation-associated stress stimuli compared to other strains. We suggest that compromised stress response may not only promote oxidant-based changes in the nucleolus state that may affect fermentation performance but also provide novel directions for future strain improvement.Electronic supplementary materialThe online version of this article (doi:10.1007/s12192-016-0710-8) contains supplementary material, which is available to authorized users.
机译:涉及啤酒生产的Saccharomyces sensu stricto复合体的酵母菌株是一个异质类,其遗传和基因组特征尚未得到充分确定。因此,本研究的目的是提供啤酒顶部发酵菌株和较大底部发酵菌株的市售酿造酵母的选择的遗传表征。分子核型分析显示,选择了染色体模式的多样性和四个具有最突出遗传变异性的菌株,并对其进行了基于全基因组的基于阵列的比较基因组杂交(array-CGH)分析。在五个功能基因类别中发现了基因拷贝数的差异:(1)麦芽糖的代谢和转运;(2)对毒素的反应;(3)铁载体转运;(4)细胞醛代谢过程;以及(5)L-麦芽糖醇2-脱氢酶活性(p <0.05)。在受影响最严重的阵列CGH谱图的Saflager W-34 / 70菌株(Fermentis)中,芳基醇脱氢酶(AAD)基因剂量的损失与氧化还原状态失衡,氧化性DNA损伤和断裂,核仁蛋白水平降低相关Nop1和Fob1,并降低了与其他菌株相比对发酵相关的应激刺激的耐受性。我们认为受损的应激反应不仅可能促进核仁状态中基于氧化剂的变化,这可能会影响发酵性能,而且还为未来菌株的改良提供了新的方向。电子补充材料本文的在线版本(doi:10.1007 / s12192-016- 0710-8)包含补充材料,授权用户可以使用。

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