Cadete Raquel M, Rosa Carlos A
Departamento de Microbiologia, ICB, C.P. 486, Universidade Federal de Minas Gerais, Belo Horizonte, MG, 31270-901, Brazil.
Yeast. 2018 Feb;35(2):191-199. doi: 10.1002/yea.3279. Epub 2017 Oct 11.
Yeasts of the Spathaspora clade have the ability to convert d-xylose to ethanol and/or xylitol. This is an important trait, as these yeasts may be used to produce bioethanol from lignocellulosic biomass or as a source of new d-xylose metabolism genes for recombinant industrial strains of Saccharomyces cerevisiae. The core group of the genus Spathaspora has 22 species, both formally described and not yet described. Other species, such as Sp. allomyrinae, Candida alai, C. insectamans, C. lyxosophila, C. sake, Sp. boniae and C. subhashii are weakly associated with this clade, based on LSU rRNA gene D1/D2 sequence analyses. Spathaspora passalidarum, Sp. arborariae, Sp. gorwiae and Sp. hagerdaliae produce mostly ethanol from d-xylose, whereas the remaining species within the Spathaspora clade already tested for this property may be considered xylitol producers. Among the d-xylose-fermenting Spathaspora species, Sp. passalidarum is the best ethanol producer, displaying high ethanol yields and productivities when cultured in media supplemented with this pentose under oxygen-limited or anaerobic conditions. The species also exhibits rapid d-xylose consumption and the ability to ferment glucose, xylose and cellobiose simultaneously. These characteristics suggest that Sp. passalidarum is a potential candidate for domestication and use in the fermentation of lignocellulosic materials. Copyright © 2017 John Wiley & Sons, Ltd.
斯帕塔孢酵母属分支的酵母具有将D-木糖转化为乙醇和/或木糖醇的能力。这是一个重要特性,因为这些酵母可用于从木质纤维素生物质生产生物乙醇,或作为酿酒酵母重组工业菌株新的D-木糖代谢基因的来源。斯帕塔孢酵母属的核心类群有22个物种,包括已正式描述和尚未描述的。根据 LSU rRNA基因D1/D2序列分析,其他物种,如异形斯帕塔孢酵母、阿拉伊假丝酵母、嗜虫假丝酵母、嗜粘假丝酵母、清酒假丝酵母、博尼亚斯帕塔孢酵母和苏巴希假丝酵母与该分支的关联较弱。巴氏斯帕塔孢酵母、树栖斯帕塔孢酵母、戈尔维亚斯帕塔孢酵母和哈格达尔斯帕塔孢酵母主要从D-木糖生产乙醇,而斯帕塔孢酵母属分支内已测试该特性的其余物种可被视为木糖醇生产者。在发酵D-木糖的斯帕塔孢酵母物种中,巴氏斯帕塔孢酵母是最佳乙醇生产者,在限氧或厌氧条件下于补充了这种戊糖的培养基中培养时,显示出高乙醇产量和生产率。该物种还表现出快速消耗D-木糖以及同时发酵葡萄糖、木糖和纤维二糖的能力。这些特性表明巴氏斯帕塔孢酵母是木质纤维素材料发酵驯化和应用的潜在候选者。版权所有© 2017约翰威立父子有限公司。