Agro-Industrial Residues: Eco-Friendly and Inexpensive Substrates for Microbial Pigments Production

被引:60
作者
Lopes, Fernanda Cortez [1 ]
Ligabue-Braun, Rodrigo [2 ]
机构
[1] Univ Fed Rio Grande do Sul, Ctr Biotechnol, Grad Program Cell & Mol Biol, Porto Alegre, RS, Brazil
[2] Univ Fed Ciencias Saude Porto Alegre, Dept Pharmaceut Sci, Porto Alegre, RS, Brazil
关键词
microbial pigments; biopigments; agro-industrial residues; biological activities; antimicrobial activity; antioxidant activity; SOLID-STATE FERMENTATION; BIO-BASED PIGMENTS; MONASCUS-PURPUREUS; CAROTENOID PRODUCTION; FILAMENTOUS FUNGI; BETA-CAROTENE; BY-PRODUCTS; WASTE; OPTIMIZATION; ANTIOXIDANT;
D O I
10.3389/fsufs.2021.589414
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Many commodities are abundantly produced around the world, including soybean, corn, rice sugarcane, cassava, coffee, fruits, and many others. These productions are responsible for the generation of enormous amounts of daily residues, such as cassava and sugarcane bagasses, rice husk, and coffee peel. These residues are rich sources for renewable energy and can be used as substrates for industrial interest products. Microorganisms are useful biofactories, capable of producing important primary and secondary metabolites, including alcohol, enzymes, antibiotics, pigments, and many other molecules. The production of pigments was reported in bacteria, filamentous fungi, yeasts, and algae. These natural microbial pigments are very promising because synthetic colorants present a long history of allergies and toxicity. In addition, many natural pigments present other biological activities, such as antioxidant and antimicrobial activities, that are interesting for industrial applications. The use of inexpensive substrates for the production of these metabolites is very attractive, considering that agro-industrial residues are generated inA high amounts and usually are a problem to the industry. Therefore, in this article we review the production of microbial pigments using agro-industrial residues during the current decade (2010-2020), considering both submerged and solid state fermentations, wild-type and genetically modified microorganisms, laboratorial to large-scale bioprocesses, and other possible biological activities related to these pigments.
引用
收藏
页数:16
相关论文
共 98 条
[1]  
Abdel-Raheam H.E.F., 2016, ASSIUT J AGR SCI, V47, P13, DOI [10.21608/ajas.2016.505, DOI 10.21608/AJAS.2016.505]
[2]   Production and Characterization of Violacein by Locally Isolated Chromobacterium violaceum Grown in Agricultural Wastes [J].
Ahmad, Wan Azlina ;
Yusof, Nur Zulaikha ;
Nordin, Nordiana ;
Zakaria, Zainul Akmar ;
Rezali, Mohd Fazlin .
APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 2012, 167 (05) :1220-1234
[3]  
Ahmadi F, 2015, IRAN J VET RES, V16, P25
[4]   Agro-industrial wastes for the synthesis of carotenoids by Xanthophyllomyces dendrorhous: Mesquite pods-based medium design and optimization [J].
Angel Villegas-Mendez, Miguel ;
Enrique Aguilar-Machado, Diederich ;
Balagurusamy, Nagamani ;
Montanez, Julio ;
Morales-Oyervides, Lourdes .
BIOCHEMICAL ENGINEERING JOURNAL, 2019, 150
[5]   Production of Bio-Based Pigments from Food Processing Industry By-Products (Apple, Pomegranate, Black Carrot, Red Beet Pulps) Using Aspergillus carbonarius [J].
Arikan, Ezgi Bezirhan ;
Canli, Oltan ;
Caro, Yanis ;
Dufosse, Laurent ;
Dizge, Nadir .
JOURNAL OF FUNGI, 2020, 6 (04) :1-18
[6]   Utilization of of agro-industrial waste for the production of yellowish-orange pigment from Chryseobacterium artocarpi CECT 8497 [J].
Aruldass, Claira Arul ;
Aziz, Amira ;
Venil, Chidambaram Kulandaisamy ;
Khasim, Ali Reza ;
Ahmad, Wan Azlina .
INTERNATIONAL BIODETERIORATION & BIODEGRADATION, 2016, 113 :342-349
[7]   Violet pigment production from liquid pineapple waste by Chromobacterium violaceum UTM5 and evaluation of its bioactivity [J].
Aruldass, Claira Arul ;
Rubiyatno ;
Venil, Chidambaram Kulandaisamy ;
Ahmad, Wan Azlina .
RSC ADVANCES, 2015, 5 (64) :51524-51536
[8]   Remodeling agro-industrial and food wastes into value-added bioactives and biopolymers [J].
Arun, K. B. ;
Madhavan, Aravind ;
Sindhu, Raveendran ;
Binod, Parameswaran ;
Pandey, Ashok ;
Reshmy, R. ;
Sirohi, Ranjna .
INDUSTRIAL CROPS AND PRODUCTS, 2020, 154
[9]  
Babitha S., 2009, BIOTECHNOLOGY AGROIN, P147, DOI [10.1007/978-1-4020-9942-7_8, DOI 10.1007/978-1-4020-9942-7_8]
[10]   Biosynthesis of Astaxanthin as a Main Carotenoid in the Heterobasidiomycetous Yeast Xanthophyllomyces dendrorhous [J].
Barredo, Jose L. ;
Garcia-Estrada, Carlos ;
Kosalkova, Katarina ;
Barreiro, Carlos .
JOURNAL OF FUNGI, 2017, 3 (03)