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突变型马克斯克鲁维酵母菌株NRRL Y-50798和NRRL Y-50799在各种菊粉底物上的生长、乙醇产量及菊粉酶活性

Growth, ethanol production, and inulinase activity on various inulin substrates by mutant Kluyveromyces marxianus strains NRRL Y-50798 and NRRL Y-50799.

作者信息

Galindo-Leva Luz Ángela, Hughes Stephen R, López-Núñez Juan Carlos, Jarodsky Joshua M, Erickson Adam, Lindquist Mitchell R, Cox Elby J, Bischoff Kenneth M, Hoecker Eric C, Liu Siqing, Qureshi Nasib, Jones Marjorie A

机构信息

Department of Chemistry, Illinois State University, Normal, IL, 61790-4160, USA.

United States Department of Agriculture (USDA) Agricultural Research Service (ARS) National Center for Agricultural Utilization Research (NCAUR) Renewable Product Technology Research Unit, 1815, North University Street, Peoria, IL, 61604, USA.

出版信息

J Ind Microbiol Biotechnol. 2016 Jul;43(7):927-39. doi: 10.1007/s10295-016-1771-5. Epub 2016 Apr 29.

Abstract

Economically important plants contain large amounts of inulin. Disposal of waste resulting from their processing presents environmental issues. Finding microorganisms capable of converting inulin waste to biofuel and valuable co-products at the processing site would have significant economic and environmental impact. We evaluated the ability of two mutant strains of Kluyveromyces marxianus (Km7 and Km8) to utilize inulin for ethanol production. In glucose medium, both strains consumed all glucose and produced 0.40 g ethanol/g glucose at 24 h. In inulin medium, Km7 exhibited maximum colony forming units (CFU)/mL and produced 0.35 g ethanol/g inulin at 24 h, while Km8 showed maximum CFU/mL and produced 0.02 g ethanol/g inulin at 96 h. At 24 h in inulin + glucose medium, Km7 produced 0.40 g ethanol/g (inulin + glucose) and Km8 produced 0.20 g ethanol/g (inulin + glucose) with maximum CFU/mL for Km8 at 72 h, 40 % of that for Km7 at 36 h. Extracellular inulinase activity at 6 h for both Km7 and Km8 was 3.7 International Units (IU)/mL.

摘要

具有经济重要性的植物含有大量菊粉。其加工产生的废物处理带来了环境问题。找到能够在加工现场将菊粉废料转化为生物燃料和有价值的副产品的微生物将产生重大的经济和环境影响。我们评估了马克斯克鲁维酵母的两种突变菌株(Km7和Km8)利用菊粉生产乙醇的能力。在葡萄糖培养基中,两种菌株在24小时内消耗了所有葡萄糖,并产生了0.40克乙醇/克葡萄糖。在菊粉培养基中,Km7在24小时时表现出最大菌落形成单位(CFU)/毫升,并产生了0.35克乙醇/克菊粉,而Km8在96小时时表现出最大CFU/毫升,并产生了0.02克乙醇/克菊粉。在菊粉+葡萄糖培养基中培养24小时时,Km7产生了0.40克乙醇/克(菊粉+葡萄糖),Km8产生了0.20克乙醇/克(菊粉+葡萄糖),Km8在72小时时达到最大CFU/毫升,为Km7在36小时时的40%。Km7和Km8在6小时时的胞外菊粉酶活性均为3.7国际单位(IU)/毫升。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f07a/4902847/1a50ec5b5ac9/10295_2016_1771_Fig1_HTML.jpg

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