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1.
Appl Biochem Biotechnol ; 191(1): 212-225, 2020 May.
Article in English | MEDLINE | ID: mdl-32112188

ABSTRACT

This work evaluated the effect of the cowpea (Vigna unguiculata L. Walp) extract concentration on mead production. Fermentations were carried out in 500-mL Erlenmeyer flasks containing 250 mL of honey wort (30 °Brix), supplemented with 1 g L-1 of ammonium sulfate and 0.1 g L-1 of magnesium chloride and the cowpea extract (5 and 30 g L-1), inoculated with 106 cells mL-1, and incubated at 30 °C for 240 h. Higher cell growth ((cells mL-1): 11.1 × 107, 11.3 × 107, and 19.6 × 107; substrate consumption (%): 86.0, 90.0, and 85.0) and ethanol production ((v v-1 %): 15.0, 15.5, and 14.1) for yeasts Safbrew T-58, Premier Blanc, and Premier Cuvée, respectively, were obtained with 30 g L-1 of bean extract. S. bayanus Premier Blanc had the best metabolic activity with lowest glycerol production (8.5 g L-1) and highest ethanol volumetric yields (0.51-1.52 h-1) after 48 h of fermentation.


Subject(s)
Alcoholic Beverages , Plant Extracts , Saccharomyces cerevisiae/growth & development , Saccharomyces/growth & development , Vigna/chemistry , Plant Extracts/chemistry , Plant Extracts/pharmacology
2.
Biodegradation ; 22(4): 815-22, 2011 Jul.
Article in English | MEDLINE | ID: mdl-20683763

ABSTRACT

The evaluation of hexose and pentose in pre-cultivation of Candida guilliermondii FTI 20037 yeast on xylose reductase (XR) and xylitol dehydrogenase (XDH) enzymes activities was performed during fermentation in sugarcane bagasse hemicellulosic hydrolysate. The xylitol production was evaluated by using cells previously growth in 30.0 gl(-1) xylose, 30.0 gl(-1) glucose and in both sugars mixture (30.0 gl(-1) xylose and 2.0 gl(-1) glucose). The vacuum evaporated hydrolysate (80 gl(-1)) was detoxificated by ion exchange resin (A-860S; A500PS and C-150-Purolite®). The total phenolic compounds and acetic acid were 93.0 and 64.9%, respectively, removed by the resin hydrolysate treatment. All experiments were carried out in Erlenmeyer flasks at 200 rpm, 30°C. The maximum XR (0.618 Umg (Prot) (-1)) and XDH (0.783 Umg (Prot) (-1)) enzymes activities was obtained using inoculum previously growth in both sugars mixture. The highest cell concentration (10.6 gl(-1)) was obtained with inoculum pre-cultivated in the glucose. However, the xylitol yield and xylitol volumetric productivity were favored using the xylose as carbon source. In this case, it was observed maximum xylose (81%) and acetic acid (100%) consumption. It is very important to point out that maximum enzymatic activities were obtained when the mixture of sugars was used as carbon source of inoculum, while the highest fermentative parameters were obtained when xylose was used.


Subject(s)
Candida/enzymology , Cellulose/metabolism , Polysaccharides/metabolism , Saccharum/metabolism , Xylitol , Acetic Acid/chemistry , Aldehyde Reductase/metabolism , Bioreactors , Candida/growth & development , Culture Media , D-Xylulose Reductase/metabolism , Fermentation , Glucose/metabolism , Hydrolysis , Phenols/metabolism , Pressure , Xylitol/biosynthesis , Xylose/metabolism
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