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May 27, 2026Bioresources and Bioproducts0 citationsOpen Access

Use of Cereals and Other Starch-Rich By-Products in Fungal Protein Production: Opportunities and Challenges

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OOOlumide Joseph OlubiyoUniversity of Arkansas at FayettevilleSFSungil FerreiraUniversity of Arkansas System

Key Points

  • This review aims to explore the potential of starch-rich agricultural by-products for producing fungal proteins, addressing sustainability and waste issues.
  • Review of literature on starch-based by-products and mycoprotein production.
  • Evaluation of pretreatment strategies and fungal fermentation using Neurospora and Fusarium spp.
  • Assessment of environmental benefits and techno-economic feasibility in converting starch residues.
  • Starch by-products significantly contribute to reducing greenhouse gas emissions compared to conventional protein sources.
  • Biomass yield maximization strategies indicate that starch residues can be effectively valorized in fungal SCP production.
  • Valorizing these by-products can support food sustainability, reduce waste management costs, and enhance resource efficiency.

Abstract

The growing worldwide need for sustainable, high-quality protein sources has intensified interest in single-cell protein (SCP) production, particularly mycoproteins derived from filamentous fungi. This shift is further driven by global sustainability priorities articulated by regulatory bodies, which promote resource efficiency, waste valorization, and sustainable food systems. Despite their high carbohydrate potential, the agricultural sector generates vast quantities of starch-rich by-products. Examples include broken rice, cassava peels, potato waste, and cereal-processing residues, which remain largely underutilized and thereby contribute substantially to environmental pollution. This literature review examines the potential of starch-based agricultural by-products as low-cost, renewable feedstocks for fungal SCP production in support of the Sustainable Development Goals (SDGs). These by-products include broken rice, cassava peels, potato waste, and cereal processing residues, which remain largely underutilized despite their high carbohydrate content. Key topics include pretreatment strategies, fungal fermentation with Neurospora and Fusarium spp., and process optimization to maximize biomass yield and feedstock valorization. Life cycle assessments (LCAs) indicate reduced greenhouse gas emissions compared with conventional protein sources, highlighting the potential of starch residues in circular bioeconomy systems. Furthermore, considerations related to process design, environmental benefits, and techno-economic feasibility are evaluated in the context of converting starch residues into fungal protein. In summary, the evidence suggests that valorizing starch by-products for mycoprotein fermentation, used both as a protein alternative and as an ingredient, represents a promising strategy to reduce waste management and production costs and support global food sustainability.

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Cite This Study

Olubiyo et al. (2026) studied this question.

synapsesocial.com/papers/6a168b770c924ddd1bd5a3ddhttps://doi.org/10.3390/bioresourbioprod2020008
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