ATCC1015

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ATCC1015标准菌株基本信息

出品公司: ATCC
菌种名称: ATCC1015, ATCC 1015
菌种又名: A1144 3528.7 [ATCC 10582, CBS 113.46, IMI 31821, LSHB Ac4, NCTC 3858a, NRRL 1278, NRRL 328, NRRL 350, NRRL 511, TC 167]
菌株类型: 黑曲霉,黑曲菌;黑曲霉菌;黑麴菌;和黑曲霉菌Aspergillus niger
存储人: C Thom
分离来源:  
产品目录号: 1015
其他保藏库编号: BCRC34770,ATCC 1015; ATCC 10582; CBS 113.46; CCUG 33991; CDBB 177; CMI 31821; IMI 31821; FGSC A1144; IAM 2158; JCM 22282; KCTC 6982; LSHB Ac4; NCTC 3858a; NCIM 588; NCIM 591; NRRL 1278; NRRL 328; NRRL 350, NRRL 511; THOM 167; Thom 3528.7; Thom 5661.1; USDA 3528.7
培养基:
ATCC® Medium 28: Emmons' modification of Sabouraud's agar
ATCC® Medium 323: Malt agar medium
ATCC® Medium 336: Potato dextrose agar (PDA)
生长条件: 24-26 ℃,  有氧
生物安全等级: 1
模式菌株:
应用: 科研,生产,主要用于降解苹果渣,生产柠檬酸柠檬酸,产生糖化酶,用苹果渣生产柠檬酸
菌株特点:
ATCC 1015是黑曲霉,Aspergillus niger 。Nucleotide (GenBank) : JX535496 ITS including 5.8S rRNA gene
 
Nucleotide (GenBank) : JX535499 D1/D2 region of 28S region
 
Nucleotide (GenBank) : KU897004 beta-tubulin (TUB2) gene
 
Nucleotide (GenBank) : X52521 Aspergillus niger bphA gene for benzoate-para-hydroxylase
 
Nucleotide (GenBank) : ACJE01000000 Aspergillus niger ATCC 1015, whole genome shotgun sequencing project
 
参考文献:
Biotechnol. Lett. 6: 763-764, 1984.
 
Currie JN. The citric acid fermentation of Aspergillus niger. J. Biol. Chem. 31: 15-37, 1917.
 
Andersen MR, et al. Comparative genomics of citric-acid-producing Aspergillus niger ATCC 1015 versus enzyme-producing CBS 513.88. Genome Res. 21: 885-897, 2011. PubMed: 21543515
 
Dragosits M, et al. Recombinant Aspergillus β- galactosidases as a robust glycomic and biotechnological tool. Appl. Microbiol. Biotechnol. 98: 3553-3567, 2014. PubMed: 24037406
 
Lawrence DP, et al. Interkingdom gene transfer of a hybrid NPS/PKS from bacteria to filamentous Ascomycota. PLoS One 6: e28231, 2011. PubMed: 22140558
 
Scott-Craig JS, et al. Biochemical and molecular characterization of secreted alpha-xylosidase from Aspergillus niger. J. Biol. Chem. 286: 42848-42854, 2011. PubMed: 22033931
 
Howard SJ, et al. Cryptic species and azole resistance in the Aspergillus niger complex. Antimicrob Agents Chemother 55: 4802-4809, 2011. PubMed: 21768508
 
Yamada O, et al. Molecular biological researches of Kuro-Koji molds, their classification and safety. J. Biosci. Bioeng. 112: 233-237, 2011. PubMed: 21641278
 
Li Y, et al. Comparative characterization of fungal anthracenone and naphthacenedione biosynthetic pathways reveals an α-hydroxylation-dependent Claisen-like cyclization catalyzed by a dimanganese thioesterase. J. Am. Chem. Soc.133: 15773-15785, 2011. PubMed: 21866960
 
Glenn AE, et al. Comparative genomic and phylogenetic investigation of the xenobiotic metabolizing arylamine N-acetyltransferase enzyme family. FEBS Lett 584: 3158-3164, 2010. PubMed: 20621844
 
Hinrikson HP, et al. Assessment of ribosomal large-subunit D1-D2, internal transcribed spacer 1, and internal transcribed spacer 2 regions as targets for molecular identification of medically important Aspergillus species. J. Clin. Microbiol. 43: 2092-2103, 2005. PubMed: 15872227
 

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