Insects as future food – nutrient requirements and manipulation of whole-body composition in Tenebrio molitor larvae

) are the most common production systems insects reared as an alternative protein source for human food or in livestock feeds. However, the nutrient composition, particularly of larval insects (BSFL and MW), varies significantly. This review will focus on the protein nutritional quality of these species, as well as describing how body composition of MW can be manipulated. These three insect species contain relatively high concentrations of protein (34-72%) and have reported digestibility which varies widely (48-99%). Digestible indispensable amino acid scores (DIAAS) for these three species are at best 75-92%, each with a different limiting indispensable amino acid. Both protein content and digestibility vary between species but also within species due to different feeds and product processing. The administration of exogenous Juvenile Hormone to MW feed causes a large and favourable increase in protein and decrease in fat content, thereby demonstrating the potential for MW nutrient composition to be manipulated to provide a higher value feed ingredient. A similarly agriculturally positive impact on MW nutrient composition, but also growth characteristics, can also be achieved by independently manipulating the individual macro- and micro-nutrient composition of MW's feed. This demonstrates use of feeds with varying nutrient content, could potentially be used to differentially alter protein to fat ratios in MW and increase the total yield of protein. This would represent an important step in improving the commercial viability of mealworms as an animal feed.

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Publication Details

Journal
Proceedings of The Nutrition Society
Published
2026-09-15
DOI
https://doi.org/10.1017/s0029665126105424
Primary Topic
Insect Utilization and Effects
Type
article
Field-Weighted Citation Impact
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article

Insects as future food – nutrient requirements and manipulation of whole-body composition in Tenebrio molitor larvae

Victoria Hill, Tim Parr, Andrew M. Salter, John Brameld et al.
Proceedings of The Nutrition Society
Insect Utilization and Effects
article

Insects as future food – nutrient requirements and manipulation of whole-body composition in Tenebrio molitor larvae

Victoria Hill, Tim Parr, Andrew M. Salter, John Brameld, Basil Tamim
article en

Abstract

) are the most common production systems insects reared as an alternative protein source for human food or in livestock feeds. However, the nutrient composition, particularly of larval insects (BSFL and MW), varies significantly. This review will focus on the protein nutritional quality of these species, as well as describing how body composition of MW can be manipulated. These three insect species contain relatively high concentrations of protein (34-72%) and have reported digestibility which varies widely (48-99%). Digestible indispensable amino acid scores (DIAAS) for these three species are at best 75-92%, each with a different limiting indispensable amino acid. Both protein content and digestibility vary between species but also within species due to different feeds and product processing. The administration of exogenous Juvenile Hormone to MW feed causes a large and favourable increase in protein and decrease in fat content, thereby demonstrating the potential for MW nutrient composition to be manipulated to provide a higher value feed ingredient. A similarly agriculturally positive impact on MW nutrient composition, but also growth characteristics, can also be achieved by independently manipulating the individual macro- and micro-nutrient composition of MW's feed. This demonstrates use of feeds with varying nutrient content, could potentially be used to differentially alter protein to fat ratios in MW and increase the total yield of protein. This would represent an important step in improving the commercial viability of mealworms as an animal feed.

Proceedings of The Nutrition Society
University of Nottingham (GB), King Abdulaziz University (SA)
Zero hunger
Openalex Percentile: Top 12%
Insect Utilization and Effects
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