4.5 Article

Agaricus blazei production on non-composted substrates based on sunflower seed hulls and spent oyster mushroom substrate

期刊

WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY
卷 27, 期 6, 页码 1331-1339

出版社

SPRINGER
DOI: 10.1007/s11274-010-0582-5

关键词

Almond portobello; A. brasiliensis; Productivity; Axenic substrate; Vermicompost

资金

  1. Consejo Nacional de Investigaciones Cientificas y Tecnicas (CONICET)
  2. Comision de Investigaciones Cientificas de la Provincia de Buenos Aires (CIC, La Plata, Argentina)
  3. Universidad Nacional del Sur (UNS, Bahia Blanca, Argentina)

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Agaricus blazei Murrill is usually cultivated using the same biphasic composting method employed for A. bisporus. Because cultivation of A. blazei on traditional A. bisporus composts poses some disadvantages, non-composted substrates were studied for A. blazei cultivation. Mycelial growth rate and productive performance of A. blazei were evaluated on substrates containing sunflower seed hulls, Pleurotus spp. spent mushroom substrate, or their combination, in the absence or in the presence of different supplements (vermicompost, peat or brewery residues). Substrates were prepared by initially soaking them and then they were sterilized (1 atm for 120 min). In addition, each substrate's degradation was measured after cultivation by obtaining the lignin, cellulose, hemicellulose, organic matter, total fiber, ash, carbon and nitrogen contents before spawn-run and at the end of two flushes of A. blazei. The cultivation of A. blazei on non-composted substrates is possible and with a low rate of contamination when using the spent mushroom substrate as the main component or combined 50:50 with sunflower seed hulls. In addition, the best yields were obtained on those substrates containing spent Pleurotus mushroom substrate with supplements and those mixtures with sunflower seed hulls and vermicompost. These yields were similar to those reported on composted substrates. Substrate changes in composition measured at the end of two flushes indicate that the lignin-hemicellulose fraction was preferentially used and that the substrates exhibiting the best yield showed greater biodegradation of lignin-hemicellulose fraction than the others did.

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