Colorful Treasure From Agro-Industrial Wastes: A Sustainable Chassis for Microbial Pigment Production
Красочное сокровище из агропромышленных отходов: устойчивый субстрат для производства микробных пигментов
2022-01-31
SCID: 54.1/6fmwpq6h
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agro-industrial waste feedstocksfermentation technologiesmetabolic engineeringmicrobial pigment productionnatural colorants
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Abstract (AI)
Colors with their attractive appeal have been an integral part of human lives and the easy cascade of chemical catalysis enables fast, bulk production of these synthetic colorants with low costs. However, the resulting hazardous impacts on the environment and human health has stimulated an interest in natural pigments as a safe and ecologically clean alternative. Amidst sources of natural producers, the microbes with their diversity, ease of all-season production and peculiar bioactivities are attractive entities for industrial production of these marketable natural colorants. Further, in line with circular bioeconomy and environmentally clean technologies, the use of agro-industrial wastes as feedstocks for carrying out the microbial transformations paves way for sustainable and cost-effective production of these valuable secondary metabolites with simultaneous waste management. The present review aims to comprehensively cover the current green workflow of microbial colorant production by encompassing the potency of waste feedstocks and fermentation technologies. The commercially important pigments viz. astaxanthin, prodigiosin, canthaxanthin, lycopene, and β-carotene produced by native and engineered bacterial, fungal, or yeast strains have been elaborately discussed with their versatile applications in food, pharmaceuticals, textiles, cosmetics, etc. The limitations and their economic viability to meet the future market demands have been envisaged. The most recent advances in various molecular approaches to develop engineered microbiological systems for enhanced pigment production have been included to provide new perspectives to this burgeoning field of research.
Key Findings
1
Agro-industrial wastes can serve as sustainable, low-cost feedstocks for microbial production of natural pigments while supporting simultaneous waste management.
2
Microbial pigment production offers an environmentally safer alternative to synthetic colorants, leveraging microbial diversity, year-round cultivation, and bioactive properties.
3
Molecular engineering approaches can enhance microbial pigment production, although economic viability and limitations remain important for meeting future market demand.
4
Native and engineered bacterial, fungal, and yeast strains produce pigments with applications across food, pharmaceuticals, textiles, and cosmetics.
5
The review examines fermentation workflows for producing commercially important pigments, including astaxanthin, prodigiosin, canthaxanthin, lycopene, and β-carotene.
Research Object
Microbial production systems using agro-industrial waste feedstocks for natural pigment production
Research Subject
Sustainable microbial pigment production, including waste-feedstock utilization, fermentation technologies, metabolic engineering, production enhancement, and economic viability
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2022-01-31
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