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1.
Braz. j. microbiol ; 44(3): 915-921, July-Sept. 2013. graf, tab
Article in English | LILACS | ID: lil-699781

ABSTRACT

Mustard oil cake (Brassica napus), the residue obtained after extraction of mustard oil from mustard oil seeds, was investigated for the production of lipase under solid state fermentation (SSF) using the marine yeast Yarrowia lipolytica NCIM 3589. Process parameters such as incubation time, biomass concentration, initial moisture content, carbon source concentration and nitrogen source concentration of the medium were optimized. Screening of ten nitrogen and five carbon sources has been accomplished with the help of Plackett-Burman design. The highest lipase activity of 57.89 units per gram of dry fermented substrate (U/gds) was observed with the substrate of mustard oil cake in four days of fermentation.


Subject(s)
Brassica napus/metabolism , Brassica napus/microbiology , Carbon/metabolism , Lipase/metabolism , Nitrogen/metabolism , Yarrowia/enzymology , Yarrowia/growth & development , Biomass , Culture Media/chemistry , Data Interpretation, Statistical , Fermentation , Mustard Plant , Plant Oils/isolation & purification , Time Factors
2.
Rev. argent. microbiol ; 43(3): 218-225, jun.-set. 2011. graf, tab
Article in English | LILACS | ID: lil-634695

ABSTRACT

The yeast Yarrowia lipolytica accumulates oils and is able to produce extracellular lipases when growing in different carbon sources including glycerol, the principal by-product of the biodiesel industry. In this study, biomass production of a novel mutant strain of Y. lipolytica was statistically optimized by Response Surface Methodology in media containing biodiesel-derived glycerol as main carbon source. This strain exhibited distinctive morphological and fatty acid profile characteristics, and showed an increased extracellular lipase activity. An organic source of nitrogen and the addition of 1.0 g/l olive oil were necessary for significant lipase production. Plackett-Burman and Central Composite Statistical Designs were employed for screening and optimization of fermentation in shaken flasks cultures, and the maximum values obtained were 16.1 g/l for biomass and 12.2 Units/ml for lipase, respectively. Optimized batch bioprocess was thereafter scaled in aerated bioreactors and the values reached for lipase specific activity after 95 % of the glycerol had been consumed, were three-fold higher than those obtained in shaken flasks cultures. A sustainable bioprocess to obtain biomass and extracellular lipase activity was attained by maximizing the use of the by-products of biodiesel industry.


Optimización de la producción de biomasa usando glicerol crudo, de una cepa mutante de Yarrowia lipolytica con actividad incrementada de lipasa. La levadura Yarrowia lipolytica acumula aceites y produce una lipasa extracelular al crecer en diferentes fuentes de carbono, entre ellas el glicerol, principal subproducto de la creciente industria del biodiésel. En el presente trabajo, se optimizó mediante la metodología de superficies de respuesta la producción de biomasa de una nueva cepa mutante de Y. lipolytica, empleando medios con glicerol derivado de la industria del biodiésel como principal fuente de carbono. Esta cepa presentó características morfológicas y perfil de ácidos grasos distintivos, y una mayor actividad de lipasa extracelular. Para obtener una producción significativa de lipasa extracelular, fue necesario el agregado de una fuente orgánica de nitrógeno y de 1 g/l de aceite de oliva. Se utilizaron los diseños estadísticos de Plackett-Burman y central compuesto para la selección y la optimización de las fermentaciones en frascos agitados; los máximos valores de biomasa y de lipasa obtenidos fueron de 16,1 g/l y 12,2 unidades/ml, respectivamente. Luego, el bioproceso en lote optimizado se escaló a biorreactores aireados, y los valores de actividad específica de lipasa alcanzados después de haberse consumido el 95 % del glicerol fueron tres veces más altos que los obtenidos en los cultivos en frascos agitados. En suma, se desarrolló un bioproceso sostenible para la obtención de biomasa y de una actividad de lipasa extracelular, que a la vez maximiza el uso de subproductos de la industria del biodiésel.


Subject(s)
Biomass , Culture Media/pharmacology , Fungal Proteins/genetics , Glycerol/pharmacology , Industrial Microbiology/methods , Lipase/genetics , Mycology/methods , Yarrowia/growth & development , Bioreactors , Biofuels/analysis , Culture Media, Conditioned/chemistry , DNA, Fungal/genetics , DNA, Intergenic/genetics , Fermentation , Fungal Proteins/biosynthesis , Genes, Fungal , Glycerol/isolation & purification , Hyphae/ultrastructure , Lipase/biosynthesis , Yarrowia/enzymology , Yarrowia/genetics , Yarrowia/ultrastructure
3.
Indian J Biochem Biophys ; 2009 Aug; 46(4): 294-298
Article in English | IMSEAR | ID: sea-135208

ABSTRACT

ALP2 gene encoding alkaline protease cloned from Aureobasidium pullulans HN2-3 was ligated into the surface display plasmid and expressed in the cells of the yeast Yarrowia lipolytica. The expressed alkaline protease was immobilized on the yeast cells. The activity of the immobilized enzyme with 6 His tag was found to be significantly higher than that of without 6 His tag. The immobilized enzyme showed lower optimal temperature and a lower affinity for azocasein than the free enzyme purified from A. pullulans HN2-3. The thermal stability of the immobilized enzyme enhanced and the pH stability decreased, compared to that of the free enzyme.


Subject(s)
Bacterial Proteins/chemistry , Bacterial Proteins/genetics , Caseins/chemistry , Cations , Cell Membrane/metabolism , Cloning, Molecular , Endopeptidases/chemistry , Endopeptidases/genetics , Enzymes, Immobilized/chemistry , Fungi/enzymology , Gene Expression Regulation, Fungal , Genetic Engineering/methods , Hydrogen-Ion Concentration , Ions , Kinetics , Models, Biological , Temperature , Yarrowia/enzymology , Yarrowia/genetics
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