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Novel use for Candida tropicalis

A technology of Candida tropicalis, yeast extract, applied in the direction of fermentation, microorganism-based methods, microorganisms, etc., to achieve the effect of reducing costs

Inactive Publication Date: 2008-04-23
CAPITAL NORMAL UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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This technology has not been reported at home and abroad

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  • Novel use for Candida tropicalis
  • Novel use for Candida tropicalis
  • Novel use for Candida tropicalis

Examples

Experimental program
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Effect test

Embodiment 1

[0045] The separation and identification of embodiment 1 Y1

[0046]Y1 separation method: collect soil samples from a depth of 1-5 cm below the soil surface near a furfural factory, activate the collected soil samples and add them to YPD medium for enrichment culture, and then take 10mL of the enriched bacteria The solution was respectively connected to the medium containing 90mL hydrolyzate (yeast extract 3g / L, KH 2 PO 4 3g / L, malt extract 3g / L, (NH 4 ) 2 SO 4 1g / L, MgSO 4 .7H 2 (01g / L, tryptone 3g / L, the rest is lignocellulose hydrolyzate stock solution, adjust the pH to 5.0-6.0) in a 250mL Erlenmeyer flask, 80rpm, 30°C for 48h, and then take 10mL of this culture solution into 90mL In the same fresh medium, continue to culture at 80rpm, 30°C for 48h, repeat this way, after 4-5 transfers, take 10uL of the culture solution after a certain gradient dilution and spread it on the solid plate of the same medium, After culturing at 30°C for 48 hours, a single colony of typi...

Embodiment 2

[0064] Ethanol fermentation of embodiment 2 Y1

[0065] Y1 strain was inoculated into yeast extract 3g / L, KH 2 PO 4 3g / L, malt extract 3g / L, (NH 4 ) 2 SO 4 1g / L, MgSO 4 .7H 2 O 0.5g / L, tryptone 3g / L, hydrolyzate stock solution, PH5.0-5.5 in the culture medium, utilize glucose within 24h, and in fermentation process, xylose also reduces gradually, after 72 hours, xylose Sugar is completely consumed. The highest yield of ethanol reaches 96.1% of the theoretical value (theoretical yield is 0.51g / g). The fermentation conditions were 30° C., 80 rpm.

Embodiment 3

[0066] The xylitol fermentation of embodiment 3 Y1

[0067] Conditions for xylitol fermentation of Y1: ammonium sulfate 10g / L, potassium dihydrogen phosphate 3g / L, magnesium sulfate 1g / L, yeast extract 3g / L, the rest is lignocellulose hydrolyzate stock solution, adjust pH to 5.0, and ferment Conditions: 30°C, 150rpm, fermentation for 72 hours, the conversion rate of xylitol is 0.65g.g -1 .

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Abstract

The present invention provides the application of Candida tropicalis in fermenting lignocellulose hydrolysate. Candida tropicalis and its domesticated strain is applied in fermenting lignocellulose hydrolysate to degrade the fermentation inhibitor fast, to metabolize glucose for producing ethanol, to convert xylose into xylitol and to lower the cost of producing ethanol with lignocellulose. The present invention lays foundation of large scale industrial production, and provides also one Candida tropicalis strain Y1 with high fermentation efficiency.

Description

technical field [0001] The invention relates to a new application of Candida tropicalis, in particular to the application in the fermentation of lignocellulose hydrolyzate. Background technique [0002] Producing ethanol from non-food material-lignocellulosic raw materials is one of the important ways to ensure national energy security, protect the environment, and make my country's economic and social sustainable development. The composition of the lignocellulose hydrolyzate: glucose+xylose mixed sugar concentration 6%, acetic acid 10g / L, furfural 2g / L, hydroxymethylfurfural 1g / L, and contains phenolic compounds and aromatic hydrocarbon compounds. Efficient and rapid hydrolysis of lignocellulose and efficient ethanol fermentation of hydrolyzed products are two technical bottlenecks in the industrial production of fuel ethanol at home and abroad. In addition to mixed sugars, lignocellulose hydrolyzate also contains fermentation inhibitors such as furfural, hydroxymethylfurf...

Claims

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Application Information

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IPC IPC(8): C12N1/16C12P7/10C12P7/18C12R1/74
CPCY02E50/16Y02E50/10
Inventor 杨秀山
Owner CAPITAL NORMAL UNIVERSITY
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