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马克斯克鲁维酵母的生理和代谢多样性。

Physiological and metabolic diversity in the yeast Kluyveromyces marxianus.

机构信息

Department of Microbiology, University College Cork, Cork, Ireland.

出版信息

Antonie Van Leeuwenhoek. 2011 Nov;100(4):507-19. doi: 10.1007/s10482-011-9606-x. Epub 2011 Jun 15.

Abstract

Kluyveromyces marxianus is homothallic hemiascomycete yeast frequently isolated from dairy environments. It possesses phenotypic traits such as enhanced thermotolerance, inulinase production, and rapid growth rate that distinguish it from its closest relative Kluyveromyces lactis. Certain of these traits, notably fermentation of lactose and inulin to ethanol, make this yeast attractive for industrial production of ethanol from inexpensive substrates. There is relatively little known, however, about the diversity in this species, at the genetic, metabolic or physiological levels. This study compared phenotypic traits of 13 K. marxianus strains sourced from two European Culture Collections. A wide variety of responses to thermo, osmotic, and cell wall stress were observed, with some strains showing multi-stress resistance. These traits generally appeared unlinked indicating that, as with other yeasts, multiple resistance/adaptation pathways are present in K. marxianus. The data indicate that it should be possible to identify the molecular basis of traits to facilitate selection or engineering of strains adapted for industrial environments. The loci responsible for mating were also identified by genome sequencing and PCR analysis. It was found that K. marxianus can exist as stable haploid or diploid cells, opening up additional prospects for future strain engineering.

摘要

马克斯克鲁维酵母是一种常从乳制品环境中分离出来的同型接合半子囊菌酵母。它具有增强的耐热性、菊粉酶生产和快速生长速率等表型特征,使其与最接近的亲缘关系克鲁维酵母相区别。这些特征中的某些特征,特别是将乳糖和菊粉发酵为乙醇,使得这种酵母在利用廉价底物生产乙醇方面具有吸引力。然而,关于该物种在遗传、代谢或生理水平上的多样性,人们了解相对较少。本研究比较了来自两个欧洲培养物保藏中心的 13 株马克斯克鲁维酵母菌株的表型特征。观察到对热、渗透和细胞壁应激的各种反应,有些菌株表现出多应激抗性。这些特征通常似乎没有关联,表明与其他酵母一样,马克斯克鲁维酵母存在多种抗性/适应途径。数据表明,应该有可能确定性状的分子基础,以促进对适应工业环境的菌株的选择或工程改造。通过基因组测序和 PCR 分析也鉴定了负责交配的基因座。研究发现,马克斯克鲁维酵母可以作为稳定的单倍体或二倍体细胞存在,为未来的菌株工程开辟了更多的前景。

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