宁波泰斯拓生物

www.testobio.com
  • 本公司产品仅供体外研究使用,不用于临床诊断
首页  /  产品中心  /  进口菌株

产品中心

试剂盒
菌株
质粒
试剂
联系我们  CONTACT US

0574-87917803

testobio@163.com

浙江省宁波市镇海区庄市街道兴庄路9号创e慧谷42号楼B幢401室
最新促销

货号: TS263591

名称: Candida metapsilosis


货号: TS263592

名称: Candida sake


货号: TS131909

名称: HFBCI28


货号: TS131910

名称: Septoria passiflorae Sydow, anamorph


货号: TS131911

名称: Graphium cuneiferum (Berkeley et Broome) Mason et Ellis


货号: TS131912

名称: Streptomyces scabiei (Thaxter) Lambert and Loria


货号: TSTOA0001

名称: Marisediminicola antarctica


货号: TS276951

名称: Real Time PCR EasyTM-Taqman


货号: TS276952

名称: Bacillus subtilis


货号: TS276954

名称: Bacillus subtilis

Rhizopus delemar

货号 TS205972
中文名称 null
适应种属
检测范围
微信小陈 微信小章
在线留言
产品简介
购买须知
产品名称: Rhizopus delemar (Boidin) Wehmer et Hanzawa
商品货号: TS205972
Deposited As: Rhizopus oryzae Went et Prinsen Geerligs
Strain Designations: NRRL 1526 ATCC 12732, C. Thom 1034, CBS 329.47
Application:
Produces ethyl alcohol ethanol
Produces fumaric acid
Produces lipase
Biosafety Level: 1

Biosafety classification is based on U.S. Public Health Service Guidelines, it is the responsibility of the customer to ensure that their facilities comply with biosafety regulations for their own country.

Product Format: freeze-dried
Storage Conditions: Frozen: -80°C or colder
Freeze-Dried: 2°C to 8°C
Live Culture: See Propagation Section
Type Strain: no
Preceptrol®: no
Comments:

This fungus was re-identified as Rhizopus delemar based on the multigene DNA sequence comparison.

Medium: ATCC® Medium 200: YM agar or YM broth
ATCC® Medium 336: Potato dextrose agar (PDA)
ATCC® Medium 337: Potato, dextrose, yeast agar (PDY)
Growth Conditions:
Temperature: 24°C to 26°C
Atmosphere: Typical aerobic
Sequenced Data:
18S ribosomal RNA gene, partial sequence; internal transcribed spacer 1, 5.8S ribosomal RNA gene, and internal transcribed spacer 2, complete sequence; and 28S ribosomal RNA gene, partial sequence

GGTTTCCGTAGGTGAACCTGCGGAAGGATCATTAATTATGTTAAAGCGCCTTACCTTAGGGTTTCCTCTGGGGTAAGTGATTGCTTCTACACTGTGAAAATTTGGCTGAGAGACTCAGACTGGTCATGGGTAGACCTATCTGGGGTTTGATCGATGCCACTCCTGGTTTCAGGAGCACCCTTCATAATAAACCTAGAAATTCAGTATTATAAAGTTTAATAAAAAACAACTTTTAACAATGGATCTCTTGGTTCTCGCATCGATGAAGAACGTAGCAAAGTGCGATAACTAGTGTGAATTGCATATTCAGTGAATCATCGAGTCTTTGAACGCAGCTTGCACTCTATGGTTTTTCTATAGAGTACGCCTGCTTCAGTATCATCACAAACCCACACATAACATTTGTTTATGTGGTAATGGGTCGCATCGCTGTTTTATTACAGTGAGCACCTAAAATGTGTGTGATTTTCTGTCTGGCTTGCTAGGCAGGAATATTACGCTGGTCTCAGGATCTTTTTCTTTGGTTCGCCCAGGAAGTAAAGTACAAGAGTATAATCCAGCAACTTTCAAACTATGATCTGAAGTCAGGTGGGATTACCCGCTGAACTTAAGCATATCAATAA


D1D2 region of the 28S ribosomal RNA gene

ATATCAATAAGCGGAGGAAAAGAAAATAACAATGATTTCCCTAGTAACGGCGAGTGAAGAGGAAAGAGCTCAAAGTTGGAACCTGTTTGGCCTAGCTAAACCGGATTGTAGACTGTAGAAGTGTTTTCCAGGCAAGCCGAGTAAATAAGTCCTTTGGAACAGGGCATCATAGAGGGTGAGAATCCCGTCTTTGGCTTGAGCATTTGCCTTTTGTGATACGCTTTCAAAGAGTCAGGTTGTTTGGGAATGCAGCCTAAATTGGGTGGTAAATCTCACCTAAAGCTAAATATTGGCGAGAAACCGATAGCGAACAAGTACCGTGAGGGAAAGATGAAAAGAACTTTGAAAAGAGAGTTAAACAGTATGTGAAATTGTTAAAAGGGAACCGTTTGGAGCCAGACTGGCTTGTCTGTAATCAATCTAGGCTTCGGCCTGGATGCACTTGCAGGCTATGCCTGCCAACGACAATTTGACTTGAGGGAAAAAACTAAGGGAAATGTGGCCCACTTGTGGGTGTTATAGTCCCTTAGAAAATACCTTGGGTTGGATTGAGGAACGCAGCGAATGCTTTTTGGCGAGTTTTCCAGGAAGGTTTTCTGAGGTACTACGGTATCAAGGTTGATCTTTTTGGTTATACTTCTATTCGCTTAGGTTGTTGGCTTAATGACTCTAAATGAC


RNA polymerase II largest subunit gene (RPB1)

CCACATTGATTTGGCCAAGCCAGTTTTTCATATTGGTAATAACAATAATTGGTAGAATTATGCTCAACTGAACATTTGTAATTAGGGTTTTTAACTAAAATCAAGAAAATACTGGAATGTGTCTGTTTCCACTGCTCCAAACTTAAAGTTGATCAAGTGAGTATTATTGTCATATTGTACTGCACCTCTTTTTTCCTAATGATTACAAACTTTAGTCAAACCCTCGATTTGAAAGAGCTAGAAGAATCAGCGATCGAAAAGTGAGACTTCGTGCTGTGTGGGATATAGCAAAAACCAAAATGACTTGTGAAGGTGGCGACGAAGAAGATGGTTTAGAAGAAAAAGAAGAGTTTAATAGCGGTAAACGCAAAAGCAACCACGGAGGCTGCGGTTATAAACAGCCTCTTATCCGTAAAGATGGTTTAAAGCTTTATGCGCAGTTCCGCTCAAGTCCAGGAGATGTAAGTAGTGTCATTTGATCTACTGATTTGATATTTAATAATGTATTATTGTCAGGACTCTGGAAATGAAGGCAAACAGCAACTGACCGCAGCAAAAGTTTTGCAAATATTAAAGAACATCCCCGATCAAGACATTCGAGATATGGGCTTATCTGAAGAATATGCCAGACCTGAATGGATGATGATTACTGTCTTACCTGTGCCTCCTCCACAAGTTCGTCCTTCTATCCAAATGGATGGTACTAGTAAGGGTGAAGATGATTTGACCCACAAATTATCCGATATATTGAAGGCAAATGCCAATGTCAAGCGTTGTGAATCAGAAGGTGCACCAGTTCATGTTGTAAATGAATTTGAGCAGCTTTTGCAGTTCCACATTGCTACG

Name of Depositor: NRRL
References:

Enzyme Microb. Technol. 14: 938-943, 1992.

Petruccioli M, et al. Semi-continuous fumaric acid production by Rhizopus arrhizus immobilized in polyurethane sponge. Process Biochem. 31: 463-469, 1996.

Soccol CR, et al. Production of L-lactic acid by Rhizopus species. World J. Microbiol. Biotechnol. 10: 433-435, 1994.

Rhodes RA, et al. Production of fumaric acid by Rhizopus arrhizus. Appl. Microbiol. 7: 74-80, 1959.

Xu G, et al. Fumaric acid production in Saccharomyces cerevisiae by in silico aided metabolic engineering. PLoS One 7: e52086, 2012. PubMed: 23300594

Hrncirova K, et al. Rapid detection and identification of Mucormycetes from culture and tissue samples using high resolution melt analysis. J. Clin. Microbiol. 48: 3392-3394, 2010. PubMed: 20592150

Gryganskyi AP, et al. Structure, function, and phylogeny of the mating locus in the Rhizopus oryzae complex. PLoS One 5: e15273, 2010. PubMed: 21151560