K. marxianus is also used to produce the industrial enzymes: inulinase, β-galactosidase, and pectinase. Due to the heat tolerance of K. marxianus , high heat fermentations are feasible, reducing the costs normally expended for cooling as well as the potential for contamination by other fungi or bacteria.

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34464 · Histophilus somni · Bovine pneumonia · K.Bergström, SVA, Uppsala, Kluyveromyces marxianus · Meadowgold greamery · DSM, Braunschweig, 

Finally, K. marxianus fermentation was applied on several substrates pretreated with [Emim][OAc] or [Emim][MeO(H)PO₂] and enzymatically hydrolyzed: a model long fiber cellulose and two industrial LCBs, softwood (spruce) and hardwood (oak) sawdusts. The maximum ethanolic yields obtained were 1.8 to 3.9 times higher when substrates were The ability to cross K. marxianus strains with relative ease, together with CRISPR-Cas9 genome editing, should enable engineering of K. marxianus isolates with promising lipid production at temperatures far exceeding those of other fungi under development for industrial applications. The availability of new molecular tools and resources for K. marxianus, its interesting metabolic and cellular traits, and the potential to become the leading yeast for many biotechnological processes, argue strongly for increased research into this particular species. Here, we report and discuss the growth, substrate consumption, metabolite formation, and respiratory parameters of K. marxianus CBS 6556 during aerobic batch bioreactor cultivations, using a defined medium with different sugars as sole carbon and energy source, at 30 and 37 °C. Kluyveromyces marxianus ATCC ® 8554™ Designation: [15, type E, ATCC 34439, CBS 5795, CCRC 21480, DSM 5418, NCYC 1426, NRRL Y-1109, UCD 55-61, VTTC-81112] Application: Assay of trichothecenes Bacterial resistance testing adhesives Degrades glucose D-glucose Degrades whey permeate Ferments pentoses Fungus resistance testing adhesives Produces acetoin dehydrogenase diacetyl reductase Produces As mentioned in the previous sections, K. marxianus is a well-known budding yeast, which has potential for production of bioethanol, hydrolytic enzymes, food biomass, and food additives [29, 31, 124]. K. marxianus DMKU 3-1042 is a thermotolerant yeast from Thailand and efficiently produces ethanol at high temperatures .

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Eq. 10/1996/1 44 27, 28). The K.marxianus spp. strain has Abstract. The fermentation ability of thermotolerant Kluyveromyces marxianus BUNL-21 isolated in Laos was investigated.

As mentioned in the previous sections, K. marxianus is a well-known budding yeast, which has potential for production of bioethanol, hydrolytic enzymes, food biomass, and food additives [29, 31, 124]. K. marxianus DMKU 3-1042 is a thermotolerant yeast from Thailand and efficiently produces ethanol at high temperatures .

Its broad metabolic capacity combined with a rapid growth rate, thermotolerance (up to 52°C) and a high secretory capacity (e.g. secretion of lytic enzymes) have led to multiple applications in biotechnology, for example, production of bioingredients and aroma compounds, ethanol by K. marxianus exhibits a distinct thermal tolerance which allows cultiva-tion at an elevated temperature [14,19,20] which in turn accelerates the ester stripping and advances its process-integrated recovery.

K. marxianus CICC 1727-5 was more tolerant in the presence of formic acid, acetic acid, and mix inhibitors and even was capable to grow in the medium with the acetic acid concentration up to 15 g/L. K. marxianus CICC 1727-5 is a promising candidate strain for further metabolic engineering to develop robust industrial strains for the lignocellulosic ethanol.

K. marxianus CICC 1727-5 was more tolerant in the presence of formic acid, acetic acid, and mix inhibitors and even was capable to grow in the medium with the acetic acid concentration up to 15 g/L. K. marxianus CICC 1727-5 is a promising candidate strain for further metabolic engineering to develop robust industrial strains for the lignocellulosic ethanol. Kluyveromyces marxianus is a thermotolerant yeast that has been explored for potential use in biotechnological applications, such as production of biofuels, single-cell proteins, enzymes, and other heterologous proteins. Here, we present the high-quality draft of the 10.9-Mb genome of K. marxianus var.

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K marxianus

Debaryomyces, Eremothecium and Kluyveromyces marxianus yeasts did not exhibit any significant ethanol formation, while Kluyveromyces lactis behaved as  34464 · Histophilus somni · Bovine pneumonia · K.Bergström, SVA, Uppsala, Kluyveromyces marxianus · Meadowgold greamery · DSM, Braunschweig,  Kluyveromyces marxianus. SLV-439. * Intern stambeteckning, Livsmedelsverket.

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K marxianus




Kluyveromyces marxianus är en svampart som först beskrevs av Emil Christian Hansen, och fick sitt nu gällande namn av Van der Walt 1971. Ny!!: Candida 

Men det händer även en massa andra  Kluyveromyces marxianus t/ Candida kefyr a. Pichia fermentans t/ C. firmetaria a. Yarrowia lipolytica t/ C. lipolytica a. Debaryomyces hansenii t/ C. famata a.


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acid and d-lactic acid by metabolically engineered Kluyveromyces marxianus. of parton densities Skolans ansvar vid diabetes mellitus i x, k perpendicular.

Eq. 10/1996/1 44 27, 28). The K.marxianus spp. strain has Abstract.

Engineering en Kluyveromyces marxianus- stam överuttrycker KmTor-Lst8 och K. marxianus Tor- och Lst8-kodningsfragmenten (KmTOR respektive KmLST8) 

This production is much higher than previous reports. PPV VLPs produced in K. marxianus elicited high titers of IgG antibody and hemagglutination inhibition antibody, and therefore can be used to develop anti-PPV veterinary vaccines. Pre-cultures of K. marxianus 17694-DH1 and K. marxianus SBK1 were prepared using 5 mL YPD 20 and YPX 20, respectively, at 30 °C and 200 rpm. The cells were subsequently inoculated in a 250 mL shaking flask containing 50 mL YPD 40, YPX 40, or YPD 40 X 40 with an initial OD 600 of 1.00 at 30 °C and 110 rpm. Background Kluyveromyces marxianus combines the ease of genetic manipulation and fermentation with the ability to efficiently secrete high molecular weight proteins, performing eukaryotic post-translational modifications. It is able to grow efficiently in a wide range of temperatures. The secretion performances were analyzed in the host K. marxianus L3 in the range between 5°C and 40°C by K. marxianus is also used to produce the industrial enzymes: inulinase, β-galactosidase, and pectinase.

socker*, citronjuice (2 %)*, ingefära (1,7 %)*, levande bakteriekultur (L-lactis, L-cremoris, L-diacetylactis, L-casei, L-acidophilus, kluyveromyces marxianus).