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Citation: Mg. Wiebe et al., Production of tissue plasminogen activator (t-PA) in Aspergillus niger, BIOTECH BIO, 76(2), 2001, pp. 164-174
Citation: Mg. Wiebe et al., Evolution of a recombinant (gucoamylase-producing) strain of Fusarium venenatum A3/5 in chemostat culture, BIOTECH BIO, 73(2), 2001, pp. 146-156
Authors:
Gordon, CL
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Citation: Cl. Gordon et al., Glucoamylase :: green fluorescent protein fusions to monitor protein secretion in Aspergillus niger, MICROBIO-UK, 146, 2000, pp. 415-426
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Citation: Rj. Swift et al., The effect of organic nitrogen sources on recombinant glucoamylase production by Aspergillus niger in chemostat culture, FUNGAL G B, 31(2), 2000, pp. 125-133
Citation: Rj. Swift et al., Evolution of Aspergillus niger and A-nidulans in glucose-limited chemostatcultures, as indicated by oscillations in the frequency of cycloheximide resistant and morphological mutants, MYCOL RES, 104, 2000, pp. 333-337
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Gordon, CL
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Citation: Mg. Wiebe et al., Growth-rate-independent production of recombinant glucoamylase by Fusariumvenenatum JeRS 325, BIOTECH BIO, 68(3), 2000, pp. 245-251
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Mainwaring, DO
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Citation: Do. Mainwaring et al., Effect of pH on hen egg white lysozyme production and evolution of a recombinant strain of Aspergillus niger, J BIOTECH, 75(1), 1999, pp. 1-10
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Citation: Js. Webb et al., Plasticizers increase adhesion of the deteriogenic fungus Aureobasidium pullulans to polyvinyl chloride, APPL ENVIR, 65(8), 1999, pp. 3575-3581
Citation: Sp. Bocking et al., Effect of branch frequency in Aspergillus oryzae on protein secretion and culture viscosity, BIOTECH BIO, 65(6), 1999, pp. 638-648
Authors:
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Citation: Mg. Wiebe et al., PH regulation of recombinant glucoamylase production in Fusarium venenatumJeRS 325, a transformant with a Fusarium oxysporum alkaline (trypsin-like)protease promoter, BIOTECH BIO, 64(3), 1999, pp. 368-372
Citation: Rj. Swift et al., Recombinant glucoamylase production by Aspergillus niger B1 in chemostat and pH auxostat cultures, FUNGAL G B, 25(2), 1998, pp. 100-109