Biodegradation of agave Comiteco bagasse by spp.: a source of cellulases useful in hydrolytic treatment to produce reducing sugars.

Miriam Lagunes-Reyes, Jos�� E S��nchez, Ren�� H Andrade-Gallegos, Rub��n F Guti��rrez-Hern��ndez, Reyna L Camacho-Morales
Author Information
  1. Miriam Lagunes-Reyes: El Colegio de la Frontera Sur, Carr. Antiguo Aeropuerto km 2.5, 30700 Tapachula, Chiapas Mexico. ORCID
  2. Jos�� E S��nchez: El Colegio de la Frontera Sur, Carr. Antiguo Aeropuerto km 2.5, 30700 Tapachula, Chiapas Mexico. ORCID
  3. Ren�� H Andrade-Gallegos: El Colegio de la Frontera Sur, Carr. Antiguo Aeropuerto km 2.5, 30700 Tapachula, Chiapas Mexico. ORCID
  4. Rub��n F Guti��rrez-Hern��ndez: Departamento de Ingenier��a Qu��mica y Bioqu��mica, Instituto Tecnol��gico de Tapachula, Tecnol��gico Nacional de M��xico, 30700 Tapachula, Chiapas Mexico. ORCID
  5. Reyna L Camacho-Morales: Instituto de Ciencias Agr��colas, Universidad Aut��noma de Baja California, ��lvaro Obreg��n s/n, Nueva, 21100 Mexicali, BC Mexico. ORCID

Abstract

This study aimed to determine the production parameters of five strains of spp. during their cultivation on agave bagasse, as well as the feasibility of using cellulolytic extracts to produce reducing sugars in the same bagasse. After cultivation, the basidiome production parameters varied between 41.2 and 65.7% (biological efficiency), 0.17 and 0.30 (yield), 0.60 and 0.90% (production rate), 16.4 and 41.1% (Bioconversion) and 9.4 and 21.3 g (mean mushroom weight). At day 15 of growth, showed the highest ��-glucosidase activity (43.95��������4.5 IU/g); on day 33. The same strain had the highest endoglucanase activity (21.12��������0.5 IU/ml). Both extracts were partially purified, and the kinetic parameters and K were estimated (20.83 ��mole/ml sec and 232.01 ��mole/ml for ��-glucosidase and 685.01 ��mole/ml sec and 1,240.34 ��mole/ml for endoglucanase). In the enzymatic hydrolysis assay, the highest concentration of reducing sugars (43.13��������1.09 g/L; 0.21 g/g bagasse) was obtained by a mixture of the two partially purified extracts acting synergistically after 48 h and with a pH adjustment. The results suggest that the use of agave bagasse for cultivating edible mushrooms while obtaining cellulolytic extracts is an alternative treatment for waste reduction and valorization of agro-industrial by-products.

Keywords

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