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Effect of substrate particle size and additional nitrogen source on production of lignocellulolytic enzymes by Pleurotus ostreatus strains

  • Isabel Membrillo
    ,
  • Carmen Sánchez
    ,
  • ,
  • Ernesto Favela
    ,
  • Octavio Loera
  • Tecnológico de Estudios Superiores Ecatepec
    ,
  • Universidad Autónoma de Tlaxcala
    ,
  • Colegio de Postgraduados
    ,
  • Universidad Autónoma Metropolitana
Research Output: Contribution to journal Article Peer review

Publication Information

Tipo di output

Research Output: Contribution to journal Article Peer review

Lingua originale

English

Pagine da-a (Numero di pagine)

Pagine 7842-7847 (6 pagine)

Rivista (volume, numero edizione)

Bioresource Technology (Volume 99, Edizione 16)

Attività cardine della pubblicazione

  • Published - 01/11/2008

Stato pubblicazione

Published - 01/11/2008

ISSN

0960-8524

Publication IDs

  • Scopus: 45649083971
  • PubMed: 18359224

Abstract

Two strains of Pleurotus ostreatus (IE-8 and CP-50) were grown on defined medium added with wheat straw extract (WSE). Mycelia from these cultures were used as an inoculum for solid fermentation using sugar cane bagasse (C:N = 142). This substrate was used separately either as a mixture of heterogeneous particle sizes (average size 2.9 mm) or as batches with two different particle sizes (0.92 mm and 1.68 mm). Protein enrichment and production of lignocellulolytic enzymes on each particle size was compared. The effect of ammonium sulphate (AS) addition was also analyzed (modified C:N = 20), this compound favored higher levels of protein content. Strain CP-50 showed the highest increase of protein content (48% on particle size of 1.68 mm) when compared to media with no additional N source. However, strain IE-8 produced the highest levels of all enzymes: xylanases (5.79 IU/g dry wt on heterogeneous particles) and cellulases (0.18 IU/g dry wt on smallest particles), both without the addition of AS. The highest laccase activity (0.040 IU/g dry wt) was obtained on particles of 1.68 mm in the presence of AS. Since effect of particle size and addition AS was different for each strain, these criteria should be considered for diverse biotechnological applications.