Optimization of Esterase Production in Solid-State Fermentation of Agricultural Digestate

被引:6
|
作者
Bulgari, Daniela [1 ,2 ]
Renzetti, Stefano [3 ]
Messgo-Moumene, Saida [4 ]
Monti, Eugenio [5 ]
Gobbi, Emanuela [1 ]
机构
[1] Univ Brescia, Dept Mol & Translat Med, Agrifood & Environm Microbiol Platform, Viale Europa 11, I-25123 Brescia, Italy
[2] Univ Milan, Dept Food Environm & Nutr Sci, Via Celoria 2, I-20133 Milan, Italy
[3] Univ Brescia, Dept Med Surg Specialties Radiol Sci & Publ Hlth, I-25121 Brescia, Italy
[4] Univ Blida 1, Fac Nat & Life Sci, Dept Biotechnol & Agroecol, Lab Res Aromat & Med Plants, Soumaa Rd BP 270, Blida 09000, Algeria
[5] Univ Brescia, Dept Mol & Translat Med, Unit Biotechnol, Viale Europa 11, I-25123 Brescia, Italy
来源
FERMENTATION-BASEL | 2023年 / 9卷 / 06期
关键词
fungal biorefinery; response surface methodology; Trichoderma; cellulase; food waste; LIPASES;
D O I
10.3390/fermentation9060524
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The continuous increase in biogas production poses the need for innovative applications for its by-products. Solid-state fermentation (SSF) has regained attention in the development of several products because of the possibility to use low-cost and easily available substrates, such as organic wastes. SSF represents a valuable process for agricultural digestate valorization in terms of enzyme production. In the present study, cellulase and esterase were produced by Trichoderma asperellum R on a digestate-based substrate in SSF, with esterase as the highest obtained activity. After assessing the effect of light on it, the esterase production in SSF was optimized using response surface methodology. The influence of substrate composition, temperature and humidity on the enzyme production was evaluated on two sets of data generated based on digestate concentration (50% and 70% w/w). The statistical analyses revealed that these parameters affected esterase production only when Trichoderma asperellum grew on substrate containing 50% w/w of digestate. The best esterase activity (264.6 mU/mg total protein) was achieved with the following optimized SSF parameters: 50% digestate, 50% fruits, 10% sawdust, 30 & DEG;C. The current finding of esterase production on digestate-based substrates makes the SSF method presented here a sustainable and completely circular technology.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Optimization of Solid-state Fermentation Conditions for β-glucosidase Production by Aspergillus fumigatus
    Cao, Xiaohua
    Wen, Qinyou
    Zhang, Yaru
    Cheng, Zuxin
    Huang, Xinying
    Zheng, Jingui
    Huang, Zhiwei
    INTERNATIONAL JOURNAL OF AGRICULTURE AND BIOLOGY, 2019, 22 (05) : 1231 - 1238
  • [22] OPTIMIZATION OF SOLID-STATE FERMENTATION FOR BIOHERBICIDE PRODUCTION BY Phoma sp.
    Klaic, R.
    Sallet, D.
    Foletto, E. L.
    Jacques, R. J. S.
    Guedes, J. V. C.
    Kuhn, R. C.
    Mazutti, M. A.
    BRAZILIAN JOURNAL OF CHEMICAL ENGINEERING, 2017, 34 (02) : 377 - 384
  • [23] Optimization of Xylanase Production from Penicillium citrinum in Solid-State Fermentation
    Ghoshal, G.
    Banerjee, U. C.
    Chisti, Y.
    Shivhare, U. S.
    CHEMICAL AND BIOCHEMICAL ENGINEERING QUARTERLY, 2012, 26 (01) : 61 - 69
  • [24] Agricultural Bioinputs Obtained by Solid-State Fermentation: From Production in Biorefineries to Sustainable Agriculture
    Rocha, Thiago Moura
    Marcelino, Paulo Ricardo Franco
    Da Costa, Rogger Alessandro Mata
    Rubio-Ribeaux, Daylin
    Barbosa, Fernanda Goncalves
    da Silva, Silvio Silverio
    SUSTAINABILITY, 2024, 16 (03)
  • [25] Fungal Laccase Production from Lignocellulosic Agricultural Wastes by Solid-State Fermentation: A Review
    Wang, Feng
    Xu, Ling
    Zhao, Liting
    Ding, Zhongyang
    Ma, Haile
    Terry, Norman
    MICROORGANISMS, 2019, 7 (12)
  • [26] Solid-state fermentation of soyhull for the production of cellulase
    Jha, K
    Khare, SK
    Gandhi, AP
    BIORESOURCE TECHNOLOGY, 1995, 54 (03) : 321 - 322
  • [27] Solid-state Fermentation for the Production of Poly(hydroxyalkanoates)
    Sindhu, R.
    Pandey, A.
    Binod, P.
    CHEMICAL AND BIOCHEMICAL ENGINEERING QUARTERLY, 2015, 29 (02) : 173 - 181
  • [28] Improving the fructooligosaccharides production by solid-state fermentation
    de la Rosa, Orlando
    Muniz-Marquez, Diana B.
    Contreras-Esquivel, Juan C.
    Wong-Paz, Jorge E.
    Rodriguez-Herrera, Raul
    Aguilar, Cristobal N.
    BIOCATALYSIS AND AGRICULTURAL BIOTECHNOLOGY, 2020, 27
  • [29] Solid-state fermentation of soyhull for the production of cellulase
    Jha, Krishna
    Khare, S.K.
    Gandhi, A.P.
    Bioresource Technology, 1600, 54 (03):
  • [30] Optimization of Verticillium lecanii spore production in solid-state fermentation on sugarcane bagasse
    Yujie Shi
    Xiangqun Xu
    Yang Zhu
    Applied Microbiology and Biotechnology, 2009, 82 : 921 - 927