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Candida guilliermondii

The process illustrated in Figure 4.6 was developed to production scale with a capacity of 200,000 tonnes per year. This process, developed by British Petroleum, was one of several in Europe and Japan that, although fully developed, was never operated substrate commercially. This was due to sharply increased substrate costs in 1973 and political costs and social pressures against the use of petroleum-based substrates (possibly contaminated with carcinogenic or toxic compounds). Such systems do operate in the former USSR, producing Candida guilliermondii as feed. [Pg.87]

Mauersberger S, RN Matyashova, H-G Muller, AB Losinov (1980) Influence of the growth substrate and the oxygen concentration in the medium on the cytochrome P-450 content in Candida guilliermondii. Eur J Appl Microbiol Biotechnol 9 285-294. [Pg.235]

Detailed studies have been made on the /3-D-glucosidases of the following (t) Rhodotorula minuta (misnamed Saccharomyces cerevi-stae),32-335,338 (it) Kluyveromyces (Saccharomyces) lactis,337-344 (tit) Kluyveromyces (fragilis) marxianus,348,348 (iv) Kluyveromyces dobz-hanskii,348 (o) a hybrid of Kluyveromyces marxianus and Kluyveromyces dobzhanskii,348-351 (t>t) a yeast of unknown identity (see Ref. 4) called Saccharomyces cerevisiae, 36 3M-3 8 (mi) Pichia (Candida) guilliermondii,331 and (viii) Debaryomyces polymorphus (Pichia poly-morpha).358 Table X lists some characteristics of these /3-D-glucosi-... [Pg.392]

Dias, J.C.T., Rezende, R.P., Rosa, C.A., Lachance, M.-A., and Linardi, V.R. 2000. Enzymatic degradation of nitriles by a Candida guilliermondii UFMG-Y65. Canadian Journal of Microbiology, 46 525-31. [Pg.406]

Yeast strains belonging to the species of Candida fahianii, Candida guilliermondii, Candida tropicalis, Deharyomyces hansenii, Saccharomyces cerevisiae, Torulopsis Candida CandidaJumata), and Williopsis satumus also exhibit the nitrile hydratase/ amidase system able to use the series of aliphatic mono- and dinitriles as well as their matching amides as the sole N-source [20]. [Pg.273]

Fig. 12. Digital electrophoresis image of AFLP fragments of Candida strains run on an automatic DNA sequencer. Markers lanes 1,16, 25, 34 Candida guilliermondii clinical isolates, lanes 2-6 Candida glahrata type strain CBS 138 lane 7, clinical isolates others. Fig. 12. Digital electrophoresis image of AFLP fragments of Candida strains run on an automatic DNA sequencer. Markers lanes 1,16, 25, 34 Candida guilliermondii clinical isolates, lanes 2-6 Candida glahrata type strain CBS 138 lane 7, clinical isolates others.
High cerbiden activity against Candida albicans, Candida tropicalis, Candida krusei, Candida parapsitosis and Candida guilliermondii sensitive and resistant to nystatin, amphotericin C and clotrimazole was detected. [Pg.453]

Effect of Furfural, Vanillin and Syringaldehyde on Candida guilliermondii Growth and Xylitol Biosynthesis... [Pg.605]

The xylose reductase (XR) catalyzes the first step of a fungal pathway that allows certain organisms to metabolize xylose, such as Candida boidinii [6], Candida guilliermondii [7], Candida tmpicalis [8], Candida parapsilosis [9], and Debaryomyces hansenii [10]. After the reduction of xylose to xylitol by XR in a manner that can utilize nicotinamide adenine dinucleotide (reduced form NADH) or nicotinamide adenine dinucleotide phosphate (reduced form NADPH), xylitol is re-oxidized to xylulose by xyUtol dehydrogenase, which is often specific for nicotinamide adenine dinucleotide (NAD) [11]. Xylulose is then phosphorylated. An efficient, pathway should recycle the cosubstrate such that there is no... [Pg.701]

C J l ratio, 67 caldum defidency, 142 caldum gluconate, 142,145 production of, 1 caldum hydroxide, 135 GOTdttii, 126,137,334 Candida brumptii, 138 Candida guilliermondii, 87 Candida lipolytica, 85 Candida utdis, 76,78,83,87 capital equipment, 26 capital expenditure, 26 capital investment, 21 caramelisation, 254 caraway, 238 caibapenems, 151,152 carbohydrates, 202 carbon balance, 256 carbon limited cultures, 50,56 carbojqrpeptidase A, 283 carrageenan, 287 carvone, 238 casein hydrolysate, 204 catabolism, 121 catalase, 143... [Pg.213]

The utilization of 2-methylhexadecane-methyl- C (50) and octadecane[l- C] (51) in various combinations by the yeast Candida guilliermondii has been investigated by... [Pg.855]

Candeiiiia Wax SP 50, Candeiiiia Wax SP 75, Candeiiiia Wax SP 76, Candeiiiia Wax SP 78 Prime Quaiity Crude, Candeiiiia Wax SP 99 Candeiiiia Wax SP 350. See Candelilla (Euphorbia cerifera) wax Candeiiiia Wax SP 803. See Candelilla synthetic Candelilla wax Candelilla Wax Cosmetic Grade Stralpitz Candelilla Wax Fine. See Candelilla (Euphorbia cerifera) wax Candex . See Glucose Candida guilliermondii CAS 977075-47-0... [Pg.735]

Ammonium sulfate Calcium acetate Calcium chloride Calcium hydroxide Calcium sulfate Candida guilliermondii Candida lipolytica Carbohydrase Carbon, activated Carbon dioxide... [Pg.5575]

NoUeau V, Preziosi-Belloy L, Navarro JM. (1995). The reduction of xylose to xyhtol by Candida guilliermondii and Candidaparapsilosis incidence of oxygen and pH. Biotechnol Lett, 17, 417 22. [Pg.517]

Foschino R, Galli A, Ponticelli G and Volonterio G (1988) Propionic bacteria activity at different culture conditions. Ann Microbiol 38 207-222 Fraikin GY, Vorobjeva LI, Khodjaev EY, Pinyaskina EV and Ponomareva GM (1995) Protective and reactivating effects of cell extract of a propionic acid bacterium on UV-inactivated Candida guilliermondii and Escherichia coli. Microbiology 64 640-644 Francalanci F, Davis NK, Fuller JQ, Murfitt D and Leadlay PF (1986) The subunit structure of methylmalonyl-CoA mutase from Propionibacterium shermanii. Biochem J 236 489-494... [Pg.257]


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