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Literature summary for 3.2.1.4 extracted from

  • Latif, F.; Ibrahim Rajoka, M.; Malik, K.
    Saccharification of Leptochloa fusca (kallar grass straw) using thermostable cellulases (1994), Biores. Technol., 50, 107-111 .
No PubMed abstract available

Application

Application Comment Organism
degradation cellulase enzyme filtrate from Chaetomium thermophile saccharifies 5% kallar grass straw to 69% reducing sugars (quantitatively) at 50°C. Glucose concentration in the hydrolysates from different fungi is in the decreasing order of Chaetomium thermophile > Trichoderma reesei > Sporotrichum thermophile > Aspergillus fumigatus > Torula thermophila > Humicola grisea > Malbranchea pulchella. At 60°C, thermostable enzymes hydrolyse kallar grass straw at a maximum rate for the initial 20 h Thermochaetoides thermophila
degradation Freeze-dried enzyme of Trichoderma reesei, even at higher enzyme concentration results in 60% reducing sugars yield (quantitatively) at 50°C. Glucose concentration in the hydrolysates from different fungi is in the decreasing order of Chaetomium thermophile > Trichoderma reesei > Sporotrichum thermophile > Aspergillus fumigatus > Torula thermophila > Humicola grisea > Malbranchea pulchella. At 60°C, thermostable enzymes hydrolyse kallar grass straw at a maximum rate for the initial 20 h Trichoderma reesei

Localization

Localization Comment Organism GeneOntology No. Textmining
extracellular
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Thermochaetoides thermophila
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Organism

Organism UniProt Comment Textmining
Thermochaetoides thermophila
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Trichoderma reesei
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Trichoderma reesei VTT-D-79125
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