Bioconversion of Agave tequilana fructans by exo-inulinases from indigenous Aspergillus niger CH-A-2010 enhances ethanol production from raw Agave tequilana juice

Author:

Huitrón Carlos1,Pérez Rosalba2,Gutiérrez Luís1,Lappe Patricia3,Petrosyan Pavel4,Villegas Jesús1,Aguilar Cecilia1,Rocha-Zavaleta Leticia1,Blancas Abel1

Affiliation:

1. grid.9486.3 0000000121590001 Departamento de Biología Molecular y Biotecnología, Instituto de Investigaciones Biomédicas Universidad Nacional Autónoma de México Circuito Escolar s/n, Ciudad Universitaria 04510 Mexico DF Mexico

2. grid.416850.e 0000000106984037 Departamento de Medicina Genómica y Toxicología Ambiental, Instituto de Investigaciones Biomédicas UNAM, Instituto Nacional de Ciencias Médicas y Nutrición “Salvador Zubirán” 14000 Mexico City Mexico

3. grid.9486.3 0000000121590001 Departamento de Botánica, Instituto de Biología UNAM Circuito Exterior s/n, Ciudad Universitaria 04510 Mexico City Mexico

4. grid.9486.3 0000000121590001 Departamento de Medicina Genómica y Toxicología Ambiental, Instituto de Investigaciones Biomédicas UNAM Circuito Escolar s/n, Ciudad Universitaria 04510 Mexico City Mexico

Abstract

Abstract Agave tequilana fructans are the source of fermentable sugars for the production of tequila. Fructans are processed by acid hydrolysis or by cooking in ovens at high temperature. Enzymatic hydrolysis is considered an alternative for the bioconversion of fructans. We previously described the isolation of Aspergillus niger CH-A-2010, an indigenous strain that produces extracellular inulinases. Here we evaluated the potential application of A. niger CH-A-2010 inulinases for the bioconversion of A. tequilana fructans, and its impact on the production of ethanol. Inulinases were analyzed by Western blotting and thin layer chromatography. Optimal pH and temperature conditions for inulinase activity were determined. The efficiency of A. niger CH-A-2010 inulinases was compared with commercial enzymes and with acid hydrolysis. The hydrolysates obtained were subsequently fermented by Saccharomyces cerevisiae to determine the efficiency of ethanol production. Results indicate that A. niger CH-A-2010 predominantly produces an exo-inulinase activity. Optimal inulinase activity occurred at pH 5.0 and 50 °C. Hydrolysis of raw agave juice by CH-A-2010 inulinases yielded 33.5 g/l reducing sugars, compared with 27.3 g/l by Fructozyme® (Novozymes Corp, Bagsværd, Denmark) and 29.4 g/l by acid hydrolysis. After fermentation of hydrolysates, we observed that the conversion efficiency of sugars into ethanol was 97.5 % of the theoretical ethanol yield for enzymatically degraded agave juice, compared to 83.8 % for acid-hydrolyzed juice. These observations indicate that fructans from raw Agave tequilana juice can be efficiently hydrolyzed by using A. niger CH-A-2010 inulinases, and that this procedure impacts positively on the production of ethanol.

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

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