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Organic solvent adaptation of Gram positive bacteria: applications and biotechnological potentials
(Pergamon-Elsevier Science Ltd, 2011-01)
Organic-solvent-tolerant bacteria are considered extremophiles with different tolerance levels that change among species and strains, but also depend on the inherent toxicity of the solvent. Extensive studies to understand ...
Characterization of a glucose- and solvent-tolerant extracellular tannase from Aspergillus phoenicis
(2013-01-01)
Tannases have attracted wider attention because of their biotechnological potential, especially enzymes from filamentous fungi and other microorganisms. However, the biodiversity of these microorganisms has been poorly ...
Characterization of a glucose- and solvent-tolerant extracellular tannase from Aspergillus phoenicis
(2013-01-01)
Tannases have attracted wider attention because of their biotechnological potential, especially enzymes from filamentous fungi and other microorganisms. However, the biodiversity of these microorganisms has been poorly ...
An organic-solvent-tolerant esterase from thermophilic Bacillus licheniformis S-86
(Elsevier, 2009-01)
A thermophile, halotolerant and organic-solvent-tolerant esterase producer Bacillus sp. S-86 strain previously isolated was found to belong to Bacillus licheniformis species through morphological, biochemical, 16S rRNA ...
Catalytic properties of mycelium-bound lipases from Aspergillus niger MYA 135
(Springer, 2007-09)
A constitutive level of a mycelium-bound lipolytic activity from Aspergillus niger MYA 135 was strongly increased by 97% in medium supplemented with 2% olive oil. The constitutive lipase showed an optimal activity in the ...
Catalytic properties of lipase extracts frrom Aspergillus niger
(University of Zagreb, 2006-12)
Screening of lipolytic strains using Rhodamine-B/olive oil plate technique allowed the selection of Aspergillus niger MYA 135. Lipase production in submerged culture containing 2 % olive oil was enhanced by more than 50 % ...
Evaluation Of Partial Purification And Immobilization Of Lipase From Geotrichum Candidum
(ELSEVIER SCIENCE BVAMSTERDAM, 2015)