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40 results about "Meyerozyma guilliermondii" patented technology

Method for preparing bioethanol by taking sodium alginate or algae as active ingredients

The invention discloses a method for preparing bioethanol by taking sodium alginate or algae as active ingredients. Fermentation culture medium taking sodium alginate as a carbon source can be adopted, or the fermentation culture medium taking algae treatment liquor as a carbon source can be adopted, the algae treatment liquor is obtained by adopting the following method: mixing algae powder with water, and sterilizing; mixing algae powder with citric acid-sodium citrate buffer solution, regulating the pH value to be neutral with NaOH solution, adding cellulase which is 10% of the mass of algae powder, performing enzymolysis so that the cellulase is inactivated; mixing algae powder with aqueous sulfuric acid solution, and hydrolyzing. The method for preparing bioethanol comprises the steps of: inoculating 5% Meyerozyma guilliermondii strain seed solution into a sterilized fermentation culture medium, multiplying, then performing airtight anaerobic fermentation for 5-7 days at 28-32DEG C; distilling the fermented liquid to obtain bioethanol. According to the method, the bioethanol can be produced by utilizing marine algae resources; therefore, the commercial crops of grains and the like can be saved, cultivated land cannot be occupied and fresh water resources cannot be consumed; remaining solids after fermentation can serve as organic fertilizers, and the algae utilization rate can be improved; the method is simple and easy, and absolutely capable of carrying out industrial production.
Owner:YANSHAN UNIV

Method for preparing bioethanol by taking sodium alginate or algae as active ingredients

The invention discloses a method for preparing bioethanol by taking sodium alginate or algae as active ingredients. Fermentation culture medium taking sodium alginate as a carbon source can be adopted, or the fermentation culture medium taking algae treatment liquor as a carbon source can be adopted, the algae treatment liquor is obtained by adopting the following method: mixing algae powder with water, and sterilizing; mixing algae powder with citric acid-sodium citrate buffer solution, regulating the pH value to be neutral with NaOH solution, adding cellulase which is 10% of the mass of algae powder, performing enzymolysis so that the cellulase is inactivated; mixing algae powder with aqueous sulfuric acid solution, and hydrolyzing. The method for preparing bioethanol comprises the steps of: inoculating 5% Meyerozyma guilliermondii strain seed solution into a sterilized fermentation culture medium, multiplying, then performing airtight anaerobic fermentation for 5-7 days at 28-32DEG C; distilling the fermented liquid to obtain bioethanol. According to the method, the bioethanol can be produced by utilizing marine algae resources; therefore, the commercial crops of grains and the like can be saved, cultivated land cannot be occupied and fresh water resources cannot be consumed; remaining solids after fermentation can serve as organic fertilizers, and the algae utilization rate can be improved; the method is simple and easy, and absolutely capable of carrying out industrial production.
Owner:YANSHAN UNIV

Method for controlling postharvest diseases of broccoli and storing and preserving broccoli by using Meyerozyma guilliermondii

ActiveCN111134174ANo health hazardBlack spot controlBiocideFungiBiotechnologyVitamin C
The invention belongs to the field of biological control of postharvest diseases, and relates to a method for controlling postharvest diseases of broccoli and storing and preserving the broccoli by using Meyerozyma guilliermondii. The Meyerozyma guilliermondii is identified as Meyerozyma guilliermondii Y1, and the preservation number is CCTCC NO: M 2019933. The method comprises the following steps: spraying a yeast suspension on the surface of disinfected broccoli to uniformly cover the surface of the broccoli; naturally airing the broccoli, placing the aired broccoli in a container, sealing the container with gauze, and then storing the sealed broccoli at the temperature of 20 DEG C to realize control of the postharvest diseases of the broccoli and storage and preservation of the broccoli. The disease index of the broccoli treated by the Meyerozyma guilliermondii is substantially reduced, yellowing of the broccoli is delayed, reduction of the contents of soluble sugar, vitamin C and chlorophyll and increase of the content of titratable acid are alleviated, the storage quality of the broccoli is not obviously affected, and reduction of the quality of the broccoli is alleviated to acertain extent; and on the other hand, the use of chemical bactericides is reduced, so the method is safe and environmentally-friendly, and has good economic and social benefits.
Owner:JIANGSU UNIV

Breeding of Yeast Strain Producing Nitrilase and Its Application in Biotransformation of Nitrile Compounds

The invention belongs to the technical field of industrial biology, and in particular relates to a screening method for nitrilase-producing yeast and its application in the biotransformation of nitrile compounds to prepare 3-hydroxypropionic acid. The present invention provides a method for screening yeast producing nitrilase. For the first time, a yeast strain 3H2-2 capable of transforming 3-hydroxypropionitrile into 3-hydroxypropionic acid has been screened, combined with morphology, physiological and biochemical characteristics and 18S and ITS sequencing analysis, it was identified as Pichia guilliermondii (Meyerozyma guilliermondii). The strain has been deposited in the General Microorganism Center of China Committee for Culture Collection of Microorganisms (preservation number CGMCC No. 12935). Adding 3% glucose as an energy source, using the free cells of the strain to carry out transformation experiments on 3-hydroxypropionitrile, can completely convert 500mM 3-hydroxypropionitrile, and the cumulative concentration of 3-hydroxypropionate can reach 216.3mM. Pichia mongolica CGMCC 12935 has the characteristics of strong vitality and outstanding nitrile conversion ability, and a new process has been established for the synthesis of 3-hydroxypropionic acid. This process has the characteristics of mild reaction conditions, low energy consumption, and environmental friendliness.
Owner:JIANGNAN UNIV
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