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[供應(yīng)]ATCC 10864 黑曲霉-ATCC 10864 黑曲霉

貨物所在地:上海上海市

更新時(shí)間:2025-04-24 21:00:05

有效期:2025年4月24日 -- 2025年10月24日

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ATCC 10864 黑曲霉,現(xiàn)貨供應(yīng) ATCC 菌種 CMCC 菌種.上海復(fù)祥生物公司現(xiàn)貨供應(yīng)美國(guó)典型培養(yǎng)物保藏中心(ATCC)菌種。*!

 ATCC 10864 黑曲霉

ATCC? Number:10864?    Price:$205.00
Organism:Aspergillus niger van Tieghem, anamorph
Designations:NRRL 330 [4050, CBS 122.49, CECT 2775, IFO 6661, IMI 60286, MUCL 28817, WB 330]
Isolation:Chinese galls
Depositors:NRRL
History:ATCC <<--NRRL<<--C. Thom 4050 <<--- Eastman Kodak Co.
Biosafety Level:1
Shipped:freeze-dried
Growth Conditions:ATCC medium 325: Malt extract agar (Blakeslee's formula)
Temperature: 24.0°C
 
Permits/Forms:In addition to the MTA mentioned above, other ATCC and/or regulatory permits may be required for the transfer of this ATCC material. Anyone purchasing ATCC material is ultimay responsible for obtaining the permits. Please click here for information regarding the specific requirements for shipment to your location.
Applications:degrades unhydrolyzed potato starch [860] 
produces acetyl-xylan esterase [58340] 
produces acetylesterase acetyl esterase [18117] 
produces alpha-glucosidase maltase 
produces amylase, alpha 1A; salivary Amylase, salivary, alpha-1A 
produces ethyl alcohol ethanol [860] 
produces glucoamylase [46568] 
produces monoamine oxidase [17694] 
produces saccharifying enzymes [52819] 
transformation host [13801] [15113] [16756] 
produces large amounts of maltase and smaller amounts of alpha-amylase [49287] 
produces ethanol from potato starch when cocultured with Saccharomyces cerevisiae ATCC 26603 [860]
Subcollection:Fungi
References:860: Abouzied MM, Reddy CA. Direct fermentation of potato starch to ethanol by cocultures of Aspergillus niger and Saccharomyces cerevisiae. Appl. Environ. Microbiol. 52: 1055-1059, 1986. PubMed: 3539016
13801: Mohr G, Esser K. Improved transformation frequency and heterologous promoter recognition in Aspergillus niger. Appl. Microbiol. Biotechnol. 34: 63-70, 1990. PubMed: 1366974
15113: Brandhorst T, Kenealy WR. Effects of leader sequences upon the heterologous expression of restrictocin in Aspergillus nidulans and Aspergillus niger. Can. J. Microbiol. 41: 601-611, 1995. PubMed: 7641142
16756: . . DECHEMA Biotechnol. Conf. 3A: 319-323, 1989.
17694: Hoover LK, et al. Biotransformation of dopamine to norlaudanosoline by Aspergillus niger. Biotechnol. Bioeng. 38: 1029-1033, 1991.
18117: Linden J, et al. Purification and characterization of an acetyl esterase from Aspergillus niger. Appl. Biochem. Biotechnol. 45-46: 383-393, 1994. PubMed: 8010767
46568: Pazur JH, et al. Glycoenzymes: Structure and properties of the two forms of glucoamylase from Aspergillus niger. Carbohydr. Res. 20: 83-96, 1971. PubMed: 5151200
49287: Dingle J, Solomons GL. Enzymes from micro-fungi. J. Appl. Chem. 2: 395-399, 1952.
52819: Corman J, Langlykke AF. Action of mold enzymes in starch saccharification. Cereal Chem. 25: 190-201, 1948.
58340: Khan AW, et al. Comparison of natural hemicellulose and chemically acetylated xylan as substrates for the determination of acetyl-xylan esterase activity in Aspergilli. Enzyme Microb. Technol. 12: 127-131, 1990.


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