Funalia trogii (Berkeley) Bondarzew et Singer, teleomorph-质粒载体-ATCC-DSM-CCUG-泰斯拓生物

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Funalia trogii (Berkeley) Bondarzew et Singer, teleomorph
Funalia trogii (Berkeley) Bondarzew et Singer, teleomorph
规格:
货期:
编号:TS139930
品牌:Testobio
产品名称: Funalia trogii (Berkeley) Bondarzew et Singer, teleomorph
商品货号: TS139930
Deposited As: Funalia trogii (Berkeley) Bondarzew et Singer
Strain Designations: 13-2335
Application:
degrades olive-mill wastewater
degrades vinasse
produces abscisic acid
produces gibberellic acid GA3, gibberellin A3
produces indoleacetic acid
produces single-cell protein SCP
produces zeatin
produces single-cell protein from vinasse
decolorizes: crystal violet
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: frozen
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:
decolorization and phenol removal from olive mill waste water
Medium: ATCC® Medium 323: Malt agar medium
Growth Conditions:
Temperature: 30.0°C
Name of Depositor: O Yesilada
Isolation:
Populus sp., Malatya, Turkey
References:

Yesilada O. Decolourization of crystal violet by fungi. World J. Microbiol. Biotechnol. 11: 601-602, 1995.

Fiskin K, Yesilada O. The use of white rot fungi for evaluation and degradation of vinasse. Turk. J. Biol. 19: 181-189, 1995.

Fiskin K, et al. The use of white rot fungus Funalia trogii (Malatya) for the decolourization and phenol removal from olive mill wastewater. Environ. Technol. 16: 95-100, 1995.

Yesilada O, et al. Biodegradation of olive oil mill wastewater by Coriolus versicolor and Funalia trogii: effects of agitation, initial COD concentration, inoculum size and immobilization. World J. Microbiol. Biotechnol. 14: 37-42, 1998.

Yurekli F, et al. Plant growth hormone production from olive oil mill and alcohol factory wastewaters by white rot fungi. World J. Microbiol. Biotechnol. 15: 503-505, 1999.

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Funalia trogii (Berkeley) Bondarzew et Singer, teleomorph

  • 货号: TS139930
  • 好评
有货
  • 品牌 : TESTOBIO
产品名称: Funalia trogii (Berkeley) Bondarzew et Singer, teleomorph
商品货号: TS139930
Deposited As: Funalia trogii (Berkeley) Bondarzew et Singer
Strain Designations: 13-2335
Application:
degrades olive-mill wastewater
degrades vinasse
produces abscisic acid
produces gibberellic acid GA3, gibberellin A3
produces indoleacetic acid
produces single-cell protein SCP
produces zeatin
produces single-cell protein from vinasse
decolorizes: crystal violet
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: frozen
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:
decolorization and phenol removal from olive mill waste water
Medium: ATCC® Medium 323: Malt agar medium
Growth Conditions:
Temperature: 30.0°C
Name of Depositor: O Yesilada
Isolation:
Populus sp., Malatya, Turkey
References:

Yesilada O. Decolourization of crystal violet by fungi. World J. Microbiol. Biotechnol. 11: 601-602, 1995.

Fiskin K, Yesilada O. The use of white rot fungi for evaluation and degradation of vinasse. Turk. J. Biol. 19: 181-189, 1995.

Fiskin K, et al. The use of white rot fungus Funalia trogii (Malatya) for the decolourization and phenol removal from olive mill wastewater. Environ. Technol. 16: 95-100, 1995.

Yesilada O, et al. Biodegradation of olive oil mill wastewater by Coriolus versicolor and Funalia trogii: effects of agitation, initial COD concentration, inoculum size and immobilization. World J. Microbiol. Biotechnol. 14: 37-42, 1998.

Yurekli F, et al. Plant growth hormone production from olive oil mill and alcohol factory wastewaters by white rot fungi. World J. Microbiol. Biotechnol. 15: 503-505, 1999.

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