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An efficient method for isolating mating-competent cells from bottom-fermenting yeast using mating pheromone-supersensitive mutants

机译:使用配合信息素 - 超敏突变体与底部发酵酵母中分离交配态细胞的有效方法

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摘要

Crossbreeding is an effective approach to construct novel yeast strains with preferred characteristics; however, it is difficult to crossbreed strains of brewer's yeast, especially the bottom-fermenting yeast Saccharomyces pastorianus, because of the relative inefficiency of the available methods to obtain mating-competent cells (MCCs). Here, we describe a productive method for the isolation of MCCs without artificial genetic modification. We focused on the characteristics of two mating pheromone-supersensitive mutants, bar1 and sst2, that show a growth defect in the presence of the mating pheromone. When MCCs secreting -factor and a-factor were spotted on to a lawn of MATa bar1 and MAT sst2, a halo was observed around the respective MCCs. This plate assay was successful in identifying MCCs from bottom-fermenting yeast strains. Furthermore, by selecting for cells that caused the growth defect in pheromone-supersensitive cells on cultures plates, 40 /-type and six a/a-type meiotic segregants of bottom-fermenting yeast strains were successfully isolated and crossed with tester strains to verify their mating type. This method of isolation is expected to be applicable to other industrial yeast strains, including wine, sake and distiller's yeasts, and will enable MCCs without genetic modifications to be obtained. As a result, it will be a useful tool for more convenient and efficient crossbreeding of industrial yeast strains that can be applied to practical brewing. Copyright (c) 2017 John Wiley & Sons, Ltd.
机译:杂交是一种具有优选特性的有效方法来构建新的酵母菌株;然而,由于可用方法的相对低效率,难以杂交酿造酵母酵母,特别是底部发酵酵母酿酒酵母酵母菌酵母酵母酵母菌酵母酵母菌酵母酵母菌酵母酵母菌酵母酵母菌在这里,我们描述了用于分离MCC的生产方法,没有人工遗传修饰。我们专注于两个配合信息素 - 超敏突变体,Bar1和SST2的特性,在交配信息素存在下显示出生长缺陷。当发现MCCS分泌物和A-FACTIO被发现到MATA BAR1和SST2的草坪上时,在相应的MCC周围观察到光环。该板测定成功鉴定来自底部发酵酵母菌株的MCC。此外,通过选择导致培养物在培养物上的能量素 - 超敏细胞中生长缺陷的细胞,成功地分离出底部发酵酵母菌株的40 /型和六种A / A型减数分裂分离,并与测试菌株交叉以验证它们交配类型。这种隔离方法预计适用于其他工业酵母菌株,包括葡萄酒,清酒和蒸馏器的酵母,并且可以在没有遗传修饰的情况下实现MCC。结果,它将是一种有用的工具,用于更方便,高效的工业酵母菌株可以应用于实际酿造。版权所有(c)2017年John Wiley& SONS,LTD.

著录项

  • 来源
    《Yeast》 |2018年第1期|共11页
  • 作者单位

    Kirin Co Ltd Res Labs Alcohol Beverage Technol Tsurumi Ku 1-17-1 Namamugi Yokohama Kanagawa 2308628 Japan;

    Kirin Co Ltd Integrated Beverage Anal Ctr Tsurumi Ku 1-17-1 Namamugi Yokohama Kanagawa 2308628 Japan;

    Kirin Co Ltd Res Labs Alcohol Beverage Technol Tsurumi Ku 1-17-1 Namamugi Yokohama Kanagawa 2308628 Japan;

    Kirin Co Ltd Res Labs Wine Technol 4-9-1 Johnan Fujisawa Kanagawa 2510057 Japan;

    Kirin Co Ltd Res Labs Alcohol Beverage Technol Tsurumi Ku 1-17-1 Namamugi Yokohama Kanagawa 2308628 Japan;

    Kirin Co Ltd Res Labs Alcohol Beverage Technol Tsurumi Ku 1-17-1 Namamugi Yokohama Kanagawa 2308628 Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

    bottom-fermenting yeast; S; pastorianus; crossbreeding; mating; mating pheromone;

    机译:底部发酵酵母;s;牧师;交叉串;交配;交配信息素;

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