isolation of lipase producing fungi from palm oil mill

(pdf) isolation & charecterization of lipase producing fungi

(PDF) ISOLATION & CHARECTERIZATION OF LIPASE PRODUCING FUNGI

The uses of lipases are enormous and increasing and so there is every need to screen and isolate potential species capable of producing large quantities of the enzyme to use for various Industrial applications.

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(pdf) isolation of lipase producing fungi from palm oil mill

(PDF) Isolation of Lipase Producing Fungi from Palm Oil Mill

Isolation of Lipase Producing Fungi from Palm Oil Mill Effluent (POME) Dump Sites at Nsukka.pdf Braz. Arch. Biol. Technol. v.54 n.1: pp . 113-116, Jan/Feb 2011 113

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isolation of lipase producing fungi from palm oil mill

Isolation of lipase producing fungi from palm oil Mill

In this study, twelve fungal lipase producing strains belonging to Aspergillus, Penicillium, Trichoderma and Mucor genera were isolated from palm oil mill effluent composts. The Aspergillus spp. were more frequent (42%) and was present in all the samples assayed.

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isolation of lipase producing fungi from palm oil mill

Isolation of Lipase Producing Fungi from Palm Oil Mill

Isolation of Lipase Producing Fungi from Palm Oil Mill Braz. Arch. Biol. Technol. v.54 n.1: pp. 113-116, Jan/Feb 2011 115 morphological studies, a piece of PDA block containing the fungi was detached by a sharp sterile knife. The shape, size, arrangement and development of conidiophores, phialides,

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(pdf) international journal of biological & pharmaceutical

(PDF) International Journal of Biological & Pharmaceutical

Isolation of Lipase Producing Fungi from Palm Oil Mill Effluent (POME) Dump Sites at Nsukka February 2011 · Brazilian Archives of Biology and Technology Charles Nwuche

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isolation of lipase producing fungi from groundnut

ISOLATION OF LIPASE PRODUCING FUNGI FROM GROUNDNUT

isolation of lipase producing fungi from groundnut oil mill effluent soil site at nandyal a.praveen kumar1, k.jaya kumar2 and g.narasimha*1 1 Department of Virology, Sri Venkateswara University, Tirupati, India 2Department of Microbiology, Sri Venkateswara University, Tirupati, India

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isolation, optimization and molecular characterization of

Isolation, optimization and molecular characterization of

Lipase producing microorganisms are not left out in the microbial population found almost everywhere as they have been reported to be isolated from soil [4,6,24], marine environment , wastewater from fish industry , agro-industrial waste , waste volatile substances , air , palm-oil mill effluent , intestine of silkworm and on human skin .

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isolation, identification and production of lipase producing

Isolation, identification and production of lipase producing

The production of commercial enzymes, including lipase from bacteria has always been the industrial choice due to its economical and commercial feasibility. Lipases are produced by microorganisms such as bacteria and fungi. However, we have focused on bacterial microbial lipases were economically importance of several properties. The present studies of the goals of this paper were isolation

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isolation of lipase producing fungi from groundnut

ISOLATION OF LIPASE PRODUCING FUNGI FROM GROUNDNUT

isolation of lipase producing fungi from groundnut oil mill effluent soil site at nandyal a.praveen kumar1, k.jaya kumar2 and g.narasimha*1 1 Department of Virology, Sri Venkateswara University, Tirupati, India 2Department of Microbiology, Sri Venkateswara University, Tirupati, India

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isolation, optimisation and partial purification of lipase enzyme

ISOLATION, OPTIMISATION AND PARTIAL PURIFICATION OF LIPASE ENZYME

Eleven different soil samples were taken for isolation of lipase producing organisms under laboratory condition. Sources are: Bakery, Automobile industry, Groundnut field, Sunflower field, Hussain agar effluent, Oil sediment, Diary industry S il cake, Marine o sediment, Coconut oil mill, and Vegetable crop soil. The labelled samples were spread

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(pdf) international journal of biological & pharmaceutical

(PDF) International Journal of Biological & Pharmaceutical

International Journal of Biological & Pharmaceutical Research ISOLATION & CHARECTERIZATION OF LIPASE PRODUCING FUNGI FROM PALM OIL MILL EFFLUENT OBTAINED FROM PEDAVEGI, A.P., INDIA

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production, optimization and purification of lipase from

Production, optimization and purification of lipase from

Oil mill effluent Sample was collected from Kaleeswari oil refineries, Chennai, Tamil Nadu. The sample was transferred to the laboratory and stored at 4 °C. Isolation of lipase producing bacteria Lipase producing microbial cultures were isolated from oil mill effluent and enriched by periodic sub-culturing of

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strategies to characterize fungal lipases for applications in

Strategies to Characterize Fungal Lipases for Applications in

C. O. Nwuche and J. C. Ogbonna, “Isolation of lipase producing fungi from palm oil mill effluent (POME) dump sites at Nsukka,” Brazilian Archives of Biology and Technology, vol. 54, no. 1, pp. 113–116, 2011.

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industrial enzymes: lipase producing microbes from waste

INDUSTRIAL ENZYMES: LIPASE PRODUCING MICROBES FROM WASTE

Isolation and screening of lipase-producing microorganisms: Lipase producing microorganisms have been found in diverse habitats such as industrial volatile wastes from the bacterial isolates L1, L2, L3,L4, L5, L6, L7, L8, L9, L10, and L11., vegetable oil processing factories, dairies, soil contaminated with oil, oil seeds, and decaying food 36

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culture conditions for the production of thermostable lipase

Culture conditions for the production of thermostable lipase

Fungal lipases which degrade lipids from palm oil have been reported (Wongwatanapaiboon et al., 2016). In general, it can be stated that lipase production by fungi requires a somewhat higher concentration of nitrogen source than that of other microbial nutrients.

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isolates of lipolytic, proteolytic and cellulolytic bacteria

Isolates of Lipolytic, Proteolytic and Cellulolytic Bacteria

P.Pallavi, T. Ravikumar and S. Ram Reddy, Isolation and characterization of lipase producing bacteria for biodegradation of oil contamination, Int. J. Curr. Res. Aca., Rev 3(8)(2015) 56-66. N.T. Phong, N.T. Duyen, C.N. Diep, Isolation and characterization of lipid-degrading bacteria in wastewater of food processing plants and restaurants in can

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industrial enzymes: lipase producing microbes from waste

INDUSTRIAL ENZYMES: LIPASE PRODUCING MICROBES FROM WASTE

Isolation and screening of lipase-producing microorganisms: Lipase producing microorganisms have been found in diverse habitats such as industrial volatile wastes from the bacterial isolates L1, L2, L3,L4, L5, L6, L7, L8, L9, L10, and L11., vegetable oil processing factories, dairies, soil contaminated with oil, oil seeds, and decaying food 36

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(pdf) international journal of biological & pharmaceutical

(PDF) International Journal of Biological & Pharmaceutical

International Journal of Biological & Pharmaceutical Research ISOLATION & CHARECTERIZATION OF LIPASE PRODUCING FUNGI FROM PALM OIL MILL EFFLUENT OBTAINED FROM PEDAVEGI, A.P., INDIA

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lipase production from palm oil mill effluent using altered

Lipase Production from Palm Oil Mill Effluent Using Altered

aimed at production of lipase by using chemically altered strains of Aspergillus niger isolated from Palm Oil Mill Effluent (POME). The fungus spores were treated with nitrous acid (HNO 2) and N-methyl-N’nitro-N-nitroso guanidine (NTG) for strain improvement. The mutated strains were evaluated for lipase production via fermentation of POME.

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use of palm oil mill effluent as fermentative medium by

Use of Palm Oil Mill Effluent as Fermentative Medium by

The present study is aimed at assessing palm oil mill effluent as a fermentativemedium for lipase production at laboratory scale. 2 Material &method 2.1 Experimental Sample: Raw POME obtained from line Palm Oil Mill Star-Industry, Umukalika, Obingwa, Abia State Nigeria was collected from a discharge of acidification pond in sterile

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isolation of lipase producing bacteria from oil contaminated

Isolation of lipase producing bacteria from oil contaminated

(Elibol and Ozer 2001) stated that lipase production is influenced by the type and concentration of carbon and nitrogen sources, the culture pH, the growth temperature and the dissolved oxygen concentration. Used palm oil as substrate in mill effluent treatment by tropical marine yeast (Oswal et al., 2002).

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[pdf] isolation and optimization of lipase producing bacteria

[PDF] Isolation and Optimization of Lipase Producing Bacteria

Lipolytic bacteria were isolated from oil contaminated soils and grown on tributyrin media containing 1% (w/v) olive oil. The isolate showing maximum activity was identified by following Berger's manual. Different media parameters were optimized for maximal enzyme production. Peak lipase activity was observed for palm oil as carbon source, peptone as nitrogen source, at pH 7.0 and temperature

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hydrocarbon-associated substrates reveal promising fungi for

Hydrocarbon-associated substrates reveal promising fungi for

Kumar D, Kumar L, Nagar S, Raina C, Parshad R, Gupta VK (2012) Screening, isolation and production of lipase/esterase producing Bacillus sp. strain DVL2 and its potential evaluation in esterification and resolution reactions. Arch Appl Sci Res 4(4):1763–1770

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production and characterization of lipases by two new

Production and Characterization of Lipases by Two New

The medium was autoclaved at 103 kPa for 20 min and subsequently added to 2% olive oil as an inducer of lipase production. The pH was adjusted to 4.5 by the addition of a 1.5 mol/L solution of H 2 SO 4 and moisture was adjusted to 60% by adding sterile distilled water. Fermentations were carried out in 300 mL Erlenmeyer’s flasks containing 50

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